DocumentCode
1232466
Title
Wireless Information-Theoretic Security
Author
Bloch, Matthieu ; Barros, Joõo ; Rodrigues, Miguel R D ; McLaughlin, Steven W.
Author_Institution
GT-CNRS UMI, Metz
Volume
54
Issue
6
fYear
2008
fDate
6/1/2008 12:00:00 AM
Firstpage
2515
Lastpage
2534
Abstract
This paper considers the transmission of confidential data over wireless channels. Based on an information-theoretic formulation of the problem, in which two legitimates partners communicate over a quasi-static fading channel and an eavesdropper observes their transmissions through a second independent quasi-static fading channel, the important role of fading is characterized in terms of average secure communication rates and outage probability. Based on the insights from this analysis, a practical secure communication protocol is developed, which uses a four-step procedure to ensure wireless information-theoretic security: (i) common randomness via opportunistic transmission, (ii) message reconciliation, (iii) common key generation via privacy amplification, and (iv) message protection with a secret key. A reconciliation procedure based on multilevel coding and optimized low-density parity-check (LDPC) codes is introduced, which allows to achieve communication rates close to the fundamental security limits in several relevant instances. Finally, a set of metrics for assessing average secure key generation rates is established, and it is shown that the protocol is effective in secure key renewal-even in the presence of imperfect channel state information.
Keywords
channel coding; data privacy; fading channels; parity check codes; private key cryptography; probability; telecommunication security; average secure communication; imperfect channel state information; message protection; multilevel coding; optimized low-density parity-check codes; outage probability; privacy amplification; quasi static fading channel; secret key generation; secure communication protocol; wireless channel; wireless information-theoretic security; Channel state information; Communication system security; Data security; Fading; Information analysis; Information security; Parity check codes; Privacy; Protection; Wireless application protocol; Information-theoretic security; low-density parity-check (LDPC) codes; secrecy capacity; secret key agreement; wireless channels;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.2008.921908
Filename
4529264
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