DocumentCode
82823
Title
Ergodic Secret Message Capacity of the Wiretap Channel with Finite-Rate Feedback
Author
Rezki, Zouheir ; Khisti, Ashish ; Alouini, Mohamed-Slim
Author_Institution
Electr. Eng. Program, King Abdullah Univ. of Sci. & Technol. (KAUST), Thuwal, Saudi Arabia
Volume
13
Issue
6
fYear
2014
fDate
Jun-14
Firstpage
3364
Lastpage
3379
Abstract
We study the secret message capacity of an ergodic block fading wiretap channel with partial channel state information at the transmitter and perfect channel state information at the receivers, under both a short term power constraint (STPC) and a long term power constraint (LTPC). We consider that in addition to the statistics of the main and the eavesdropper channel state information (CSI), the sender is provided by the legitimate receiver with a q-bit feedback, at the beginning of each coherence block, through an error-free public channel, with capacity q bits. We establish upper and lower bounds on the secrecy capacity. We show that the lower and the upper bounds coincide asymptotically as q → ∞. When applied to Rayleigh fading channels, we show that, a 4-bit feedback achieves about 90% of the secrecy capacity when perfect main CSI is available at the transmitter. Finally, asymptotic analysis at high and low Signal-to-Noise Ratio (SNR) is presented. It is found that the capacity is bounded at high-SNR, whereas at asymptotically low-SNR, the lower bounds and the upper bound scale linearly with SNR under STPC. Furthermore, subject to LTPC, the capacity at low-SNR is equal to the capacity of the main channel without secrecy constraint and with perfect CSI at both the transmitter and the receiver, under a mild condition on the fading statistics. We also show that a positive secrecy rate is achievable even when the feedback is at the end of each coherence block and q=1.
Keywords
Rayleigh channels; coherence; statistics; telecommunication security; CSI; LTPC; Rayleigh fading channels; SNR; STPC; asymptotic analysis; coherence block; eavesdropper channel state information; ergodic block fading wiretap channel; ergodic secret message capacity; error-free public channel; fading statistics; finite-rate feedback; long term power constraint; q-bit feedback; secrecy capacity; secrecy constraint; secrecy rate; short term power constraint; signal-to-noise ratio; Channel capacity; Coherence; Fading; Receivers; Signal to noise ratio; Transmitters; Upper bound; ARQ feedback; Secrecy capacity; capacity of fading channels; high-SNR; low-SNR; proactive feedback;
fLanguage
English
Journal_Title
Wireless Communications, IEEE Transactions on
Publisher
ieee
ISSN
1536-1276
Type
jour
DOI
10.1109/TWC.2014.041014.131593
Filename
6799317
Link To Document