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EVOLVING NETWORKING TECHNOLOGIES
This book discusses in a practical manner some of the critical security challenges facing the ever-evolving networking technologies of today.
In an age of explosive worldwide growth of electronic data storage and communications, effective protection of information has become a critical requirement, especially when used in coordination with other tools for information security and cryptography in all of its applications, including data confidentiality, data integrity, and user authentication. While the importance of cryptographic technique, i.e., encryption, in protecting sensitive and critical information and resources cannot be overemphasized, an examination of the technical evolution within several industries reveals an approaching precipice of scientific change.
The glacially paced but inevitable convergence of quantum mechanics, nanotechnology, computer science, and applied mathematics will revolutionize modern technology. The implications of such changes will be far-reaching, with one of its greatest impacts affecting information security and, more specifically, modern cryptography.
The book takes the reader through these issues. As the security systems design becomes more and more complex to meet these challenges, a mistake that is committed most often by security specialists is not making a comprehensive analysis of the system to be secured before choosing which security mechanism to deploy. Often, the security mechanism chosen turns out to be either incompatible with, or inadequate for, handling the complexities of the system. In addition, the book also discusses three main points:
Audience
This book specifically appeals to industry practitioners, IT researchers, and students regarding network technological management.
Auteur
Kanta Prasad Sharma, PhD, is an assistant professor in the Computer Science & Engineering Department at GL BAJAJ Group of Institutions. His PhD in Information Technology was obtained from Amity University, and he has published 15+ research papers in international journals and conference proceedings. Shaurya Gupta, PhD, is an assistant professor at the University of Petroleum and Energy Studies, Dehradun, Uttarakhand, India. He completed his PhD in Information Technology from Amity University and has published research articles in international journals. His areas of interest are Delay Tolerant Networks, Wireless Sensor Networks, Ad Hoc Networks, IOT, and Machine Learning. Ashish Sharma, PhD, is one of the key faculty members of the information retrieval and data mining group at GLA University, India. He has published many research papers in international journals, and his research interests are in the applications of data mining, machine learning, big data, business analytics, data/text mining, healthcare informatics, and service-oriented computing. Dac-Nhuong Le obtained his PhD in computer science from Vietnam National University, Vietnam in 2015. He is Deputy-Head of the Faculty of Information Technology, Haiphong University, Vietnam. His area of research includes evaluation computing and approximate algorithms, network communication, security and vulnerability, network performance analysis and simulation, cloud computing, IoT, and image processing in biomedicine. He has over 50 publications and edited/authored 15 computer science books.
Texte du rabat
EVOLVING NETWORKING TECHNOLOGIES This book discusses in a practical manner some of the critical security challenges facing the ever-evolving networking technologies of today. In an age of explosive worldwide growth of electronic data storage and communications, effective protection of information has become a critical requirement, especially when used in coordination with other tools for information security and cryptography in all of its applications, including data confidentiality, data integrity, and user authentication. While the importance of cryptographic technique, i.e., encryption, in protecting sensitive and critical information and resources cannot be overemphasized, an examination of the technical evolution within several industries reveals an approaching precipice of scientific change. The glacially paced but inevitable convergence of quantum mechanics, nanotechnology, computer science, and applied mathematics will revolutionize modern technology. The implications of such changes will be far-reaching, with one of its greatest impacts affecting information security and, more specifically, modern cryptography. The book takes the reader through these issues. As the security systems design becomes more and more complex to meet these challenges, a mistake that is committed most often by security specialists is not making a comprehensive analysis of the system to be secured before choosing which security mechanism to deploy. Often, the security mechanism chosen turns out to be either incompatible with, or inadequate for, handling the complexities of the system. In addition, the book also discusses three main points: Configuration management is a critical issue, and as networks are increasing in size, their configuration needs to be managed. Devices may conflict with each other in terms of configuration. Therefore, it becomes challenging for firewalls to be up-to-date according to network policies. Scalability of the network is another big challenge, it would be easier to address if the network stays the same, but the network is ever expanding with a constant increase in the number of devices devoted to the network. * Vendor lock-in: Business decisions that are taken today are revolving around the assumptions and capabilities of the current vendor and environment scenario. Buying the best solutions from today's vendors involves how to interoperate, integrate, and support multiple solutions. It may involve tearing out all of the longstanding kits without tearing down the entire network at the same time. Audience This book specifically appeals to industry practitioners, IT researchers, and students regarding network technological management.
Contenu
List of Figures xv
List of Tables xix
Foreword xxi
Preface xxiii
Acknowledgments xxv
Acronyms xxvii
1 5G Technologies, Architecture and Protocols 1
Shweta Bondre, Ashish Sharma, Vipin Bondre
1.1 Evolution of Wireless Technologies 2
1.2 5G Cellular Network Architecture 4
1.2.1 5G E2E Network Architecture 6
1.2.2 Network Slicing Architecture 6
1.2.3 NFV Management and Orchestration 7
1.2.4 NGMN Envisioned 5G Design 9
1.3 5G Energy Efficiency 10
1.3.1 Full Duplex 10
1.3.2 High Network Data Rate 11
1.3.3 Dense Small Cell Deployment 11
1.3.4 Massive MIMO Antennas 11
1.4 Security in 5G 12
1.5 5G Applications 13
1.5.1 Rapid Data Transmission 13
1.5.2 5G Flexibility for Smart Mobility 13
1.5.3 5G in Smart Cities 14
1.5.4 5G Augmented Reality 14
1.6 Conclusion 14
References 15
**2 Scope and Challenges of IoT and Block…