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This complete guide to physical-layer security presents the theoretical foundations, practical implementation, challenges and benefits of a groundbreaking new model for secure communication. Using a bottom-up approach from the link level all the way to end-to-end architectures, it provides essential practical tools that enable graduate students, industry professionals and researchers to build more secure systems by exploiting the noise inherent to communications channels. The book begins with a self-contained explanation of the information-theoretic limits of secure communications at the…mehr

Produktbeschreibung
This complete guide to physical-layer security presents the theoretical foundations, practical implementation, challenges and benefits of a groundbreaking new model for secure communication. Using a bottom-up approach from the link level all the way to end-to-end architectures, it provides essential practical tools that enable graduate students, industry professionals and researchers to build more secure systems by exploiting the noise inherent to communications channels. The book begins with a self-contained explanation of the information-theoretic limits of secure communications at the physical layer. It then goes on to develop practical coding schemes, building on the theoretical insights and enabling readers to understand the challenges and opportunities related to the design of physical layer security schemes. Finally, applications to multi-user communications and network coding are also included.
Autorenporträt
Matthieu Bloch is an Assistant Professor in the School of Electrical Engineering of the Georgia Institute of Technology. He received a Ph.D. in Engineering Science from the Université de Franche-Comté, Besançon, France, in 2006, and a Ph.D. in Electrical Engineering from the Georgia Institute of Technology in 2008. His research interests are in the areas of information theory, error-control coding, wireless communications and quantum cryptography.