DocumentCode :
1766211
Title :
Full Rank Solutions for the MIMO Gaussian Wiretap Channel With an Average Power Constraint
Author :
Fakoorian, S. Ali A. ; Swindlehurst, A.L.
Author_Institution :
Center for Pervasive Commun. & Comput., Univ. of California, Irvine, Irvine, CA, USA
Volume :
61
Issue :
10
fYear :
2013
fDate :
41409
Firstpage :
2620
Lastpage :
2631
Abstract :
This paper considers a multiple-input multiple-output (MIMO) Gaussian wiretap channel with a transmitter, a legitimate receiver and an eavesdropper, each equipped with multiple antennas. We first study the rank of the optimal input covariance matrix that achieves the secrecy capacity of the MIMO Gaussian wiretap channel under an average power constraint. The rank and other properties of the optimal solution are derived based on certain relationships between the channel matrices for the legitimate receiver and eavesdropper. Next, by obtaining necessary and sufficient conditions on the MIMO wiretap channel parameters, we determine the conditions under which the optimal input covariance matrix is full-rank or rank-deficient. For the case that the optimal input covariance is full-rank, we fully characterize the solution. When the optimal input covariance is rank-deficient, we show that the given MIMO wiretap channel can be modeled by an equivalent wiretap channel whose optimal input covariance is full rank and achieves the same secrecy capacity as the original system. Numerical results are presented to illustrate the proposed theoretical findings.
Keywords :
Gaussian channels; MIMO communication; antenna arrays; channel capacity; covariance matrices; telecommunication security; MIMO Gaussian wiretap channel; average power constraint; channel matrices; full rank solutions; legitimate receiver; multiple antennas; multiple-input multiple output Gaussian wiretap channel; optimal input covariance matrix; secrecy capacity; transmitter; Covariance matrices; Eigenvalues and eigenfunctions; MIMO; Physical layer; Random variables; Receivers; Security; MIMO Wiretap Channel; physical layer security; secrecy capacity;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2013.2253774
Filename :
6484191
Link To Document :
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