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Secrecy Rate Optimizations for a MIMO Secrecy Channel With a Multiple-Antenna Eavesdropper

机译:具有多天线窃听器的MIMO保密信道的保密率优化

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This paper studies different secrecy rate optimization problems for a multiple-input–multiple-output (MIMO) secrecy channel. In particular, we consider a scenario where a communication through a MIMO channel is overheard by a multiple-antenna eavesdropper. In this secrecy network, we first investigate two secrecy rate optimization problems: 1) power minimization and 2) secrecy rate maximization. These optimization problems are not convex due to the nonconvex secrecy rate constraint. However, by approximating this secrecy rate constraint based on Taylor series expansion, we propose iterative algorithms to solve these secrecy rate optimization problems. In addition, we provide the convergence analysis for the proposed algorithms. These iterative optimization approaches are developed under the assumption that the transmitter has perfect channel state information. However, there are practical difficulties in having perfect channel state information at the transmitter. Hence, robust secrecy rate optimization techniques based on the worst-case secrecy rate are considered by incorporating channel uncertainties. By exploiting the S-Procedure, we show that these robust optimization problems can be formulated into semidefinite programming at low signal-to-noise ratios (SNRs). Simulation results have been provided to validate the convergence of the proposed algorithms. In addition, numerical results show that the proposed robust optimization techniques outperform the nonrobust schemes in terms of the worst-case secrecy rates and the achieved secrecy rates.
机译:本文研究了多输入多输出(MIMO)保密信道的不同保密速率优化问题。特别是,我们考虑了通过MIMO信道进行的通信被多天线窃听者窃听的情况。在这个保密网络中,我们首先研究两个保密率优化问题:1)功率最小化和2)保密率最大化。由于非凸保密率约束,这些优化问题不是凸面的。但是,通过基于泰勒级数展开来近似此保密率约束,我们提出了迭代算法来解决这些保密率优化问题。另外,我们为所提出的算法提供了收敛性分析。这些迭代优化方法是在发射机具有完美的信道状态信息的前提下开发的。然而,在发射机处具有完美的信道状态信息存在实际困难。因此,通过结合信道不确定性来考虑基于最坏情况的保密率的鲁棒的保密率优化技术。通过利用S程序,我们表明可以在低信噪比(SNR)下将这些鲁棒的优化问题表达为半定编程。仿真结果已经提供,以验证所提出算法的收敛性。此外,数值结果表明,在最坏情况下的保密率和达到的保密率方面,所提出的鲁棒优化技术优于非鲁棒方案。

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