Robust secrecy beamforming for full-duplex two-way relay networks under imperfect channel state information

被引:0
|
作者
Si LI [1 ]
Qiang LI [2 ]
Shihai SHAO [1 ]
机构
[1] National Key Laboratory of Science and Technology on Communications,University of Electronic Science and Technology of China
[2] School of Communication and Information Engineering,University of Electronic Science and Technology of China
基金
中国国家自然科学基金;
关键词
physical-layer security; full-duplex relay; difference-of-concave program; semidefinite relaxation; MIMO;
D O I
暂无
中图分类号
TN92 [无线通信];
学科分类号
080402 ; 080904 ; 0810 ; 081001 ;
摘要
Consider a two-way amplify-and-forward(AF) relay network where two legitimate nodes communicate through a relay in the presence of an eavesdropper. Assuming full duplexity at the legitimate nodes and the relay, a robust artificial noise(AN)-aided AF scheme is proposed to maximize the worst-case sum secrecy rate under imperfect channel state information(CSI) of the eavesdropper. This robust sum secrecy rate maximization(SSRM) problem is formulated as a max-min semi-infinite problem and is tackled by the semidefinite relaxation(SDR) method. In particular, we first convert the max-min semi-infinite problem into a maximization problem with a finite number of constraints. Then, an efficient two-block alternating difference-of-concave(DC) programming approach is proposed to iteratively solve the SDR problem, with one of the blocks computed in closed form. In addition, a specific robust rank-one solution construction procedure is presented to extract a feasible solution for the original robust SSRM problem from the SDR solution. The efficacy of the proposed method is demonstrated by numerical simulations.
引用
收藏
页码:115 / 124
页数:10
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