DocumentCode :
3604831
Title :
Secure Communication Under Channel Uncertainty and Adversarial Attacks
Author :
Schaefer, Rafael F. ; Boche, Holger ; Poor, H. Vincent
Author_Institution :
Dept. of Electr. Eng., Princeton Univ., Princeton, NJ, USA
Volume :
103
Issue :
10
fYear :
2015
Firstpage :
1796
Lastpage :
1813
Abstract :
Information theoretic approaches to security have been examined as a promising complement to current cryptographic techniques. Such information theoretic approaches establish reliable communication and data confidentiality directly at the physical layer of a communication network by taking the properties of the noisy channel into account leading to unconditional security regardless of the computational capabilities of eavesdroppers. The provision of accurate channel state information is a major challenge particularly in wireless communication systems, especially information about the channels to eavesdroppers. In addition, there might be malevolent adversaries who jam or influence the channel of the legitimate users. This paper surveys different models for secure communication under channel uncertainty and adversarial attacks and reviews the corresponding secrecy capacity results, which characterize the maximum rate at which information can be sent to legitimate receivers while being kept perfectly security from eavesdroppers.
Keywords :
channel capacity; cryptography; radio receivers; telecommunication network reliability; telecommunication security; adversarial attack; channel state information; channel uncertainty; communication network; cryptographic technique; data confidentiality; eavesdropper; information theoretic approach; legitimate receivers; legitimate user; noisy channel; physical layer; reliable communication; secrecy capacity; secure communication; wireless communication system; Communication system security; Communication systems; Compounds; Physical layer; Receivers; Security; Telecommunication services; Transmitters; Arbitrarily varying channel; common randomness; compound channel; continuity; robustness; secrecy capacity; wiretap channel;
fLanguage :
English
Journal_Title :
Proceedings of the IEEE
Publisher :
ieee
ISSN :
0018-9219
Type :
jour
DOI :
10.1109/JPROC.2015.2459652
Filename :
7217803
Link To Document :
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