Physical Layer Security


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Description

This book studies the vulnerability of wireless communications under line-of-sight (LoS) and non-LoS correlated fading environments. The authors theoretically and practically provide physical layer security analyses for several technologies and networks such as Fifth-Generation (5G) networks, Internet of Things (IoT) applications, and Non-orthogonal multiple access (NOMA). The authors have provided these under various practical scenarios, and developed theoretical aspects to validate their proposed applications.

  • Presents physical layer security (PLS) under correlated fading environments, 5G wireless networks, and NOMA networks;
  • Provides end-to-end analyses, combination of channel correlation and outdated CSI and their effects on PL;
  • Includes contributions of PLS research written by global experts in academia and industry.


Author: Khoa N. Le
Publisher: Springer
Published: 01/25/2021
Pages: 186
Binding Type: Hardcover
Weight: 1.08lbs
Size: 9.21h x 6.14w x 0.56d
ISBN13: 9783030553654
ISBN10: 3030553655
BISAC Categories:
- Technology & Engineering | Telecommunications
- Computers | Information Technology
- Computers | Networking | Hardware

About the Author

Khoa N. LE received his Ph.D. from Monash University (Victoria, Australia) in Signal Processing and Telecommunications. He is co-founder of Ecobond Pty Ltd in addition to an Honorary Professor performing research on wireless communications at Posts and Telecommunications Institute of Technology, Vietnam. He was previously a Senior Lecturer and Head of Program at Western Sydney University, Australia; Visiting Professor, University of Technology Malaysia, among other positions. He has presented at global conferences, receiving many awards including best paper, top publication prize, among others. He has edited and contributed to several publications and published dozens of journal articles. He is currently Editor for the IEEE Transactions on Vehicular Technology, and IEEE Wireless Communications Magazine, and IET Signal Processing.