The Concept of Network Security Information
Proposal
Introduction and Brief Background of the Topic
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.
Network security is a broad term. It encompasses a wide range of protective measures that
include incorporating protection, detection, and reaction capabilities which are aimed at
protecting and defending information and information systems by ensuring their availability,
integrity, authentication, confidentiality, and non-repudiation (CNSS Instruction No. 4009,
2010). The concept of network security has become crucial as computer networks were
introduced into private and corporate use.
The main concerns of security are maintaining the functionality of the network environment,
securing privacy and providing the integrity of confidential information. The threat to the points
mentioned can emerge due to network malfunction or a deliberate disruptive effort. The latter
is the most common cause and primary concern of security specialists. They differ widely but
are most often grouped into two distinct categories – active and passive. Active is defined as a
direct attempt to obtain or disrupt information by altering it and include such methods as
distributed denial of service, phishing and DNS spoofing. Passive attacks are activities that
capture the data without altering it, like port scanning.
As network technologies evolve, so do security systems, to provide up-to-date measures of
protection. These include both hardware and software solutions which need to be timely
maintained and updated to keep up with both changing environments and improvements made
by the attackers.
Recently, several major reasons have contributed to reorganizing the basic principles of
network security. Firstly, mobile devices capable of network connection gradually rise in
popularity among the general public, which requires making security measures easily
accessible and maintained by a consumer with no IT training. Mobile devices, such as
smartphones and tablet PCs, comprise the majority of such devices, providing for another
serious issue. Mobile devices network connectivity is entirely wireless, with open public
networks becoming more popular each year. Wireless networks differ significantly from
traditional wired hierarchical ones. Finally, the cloud-based services have since their
introduction been embraced by both corporate and private sector and has become a fairly
widespread phenomenon.
All of the networks mentioned above differ from traditional ones, moving away from declining
client-server structure and shifting towards more up-to-date machine-to-machine data traffic.
Such changes open new possibilities for both system malfunction and deliberate disruptive
attempts. New security solutions are constantly being implemented, such as the introduction of
software-defined networking and wireless equipment capable of implementing wireless
security features. There is, however, still much to be done. The recent history of security
breaches show that traditional means of security, like password-based access, remain
insufficient in terms of reliability while simultaneously becoming outdated in terms of
changing hardware trends (Everett, 2016). Some researchers go as far as propose radically new
dynamic environment capable of self-improvement and self-education (Zhou et al., 2015).
The main purpose of this research is to find new effective ways of securing the mobile devices
networks intended for personal use. Such networks have already integrated firmly into our daily
lives and are encountered on a daily basis. Besides, the majority of software provides the best
performance and reliability when being online, thus encouraging constant network connection.
However, the inadequate protection of the device may lead to financial problems. But of even
greater concern is an issue of privacy. The amount of personal information stored in and
transferred through phones and tablet PCs is already sufficient to raise concerns and continues
to grow. Therefore, outlining and developing the most promising branches of mobile networks
should be one of our top priorities.