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Optimal and Robust Transmit Designs for MISO Channel Secrecy by Semidefinite Programming

机译:MISO通道保密性的半确定编程优化和鲁棒传输设计

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In recent years there has been growing interest in study of multi-antenna transmit designs for providing secure communication over the physical layer. This paper considers the scenario of an intended multi-input single-output channel overheard by multiple multi-antenna eavesdroppers. Specifically, we address the transmit covariance optimization for secrecy-rate maximization (SRM) of that scenario. The challenge of this problem is that it is a nonconvex optimization problem. This paper shows that the SRM problem can actually be solved in a convex and tractable fashion, by recasting the SRM problem as a semidefinite program (SDP). The SRM problem we solve is under the premise of perfect channel state information (CSI). This paper also deals with the imperfect CSI case. We consider a worst-case robust SRM formulation under spherical CSI uncertainties, and we develop an optimal solution to it, again via SDP. Moreover, our analysis reveals that transmit beamforming is generally the optimal transmit strategy for SRM of the considered scenario, for both the perfect and imperfect CSI cases. Simulation results are provided to illustrate the secrecy-rate performance gains of the proposed SDP solutions compared to some suboptimal transmit designs.
机译:近年来,人们越来越关注用于在物理层上提供安全通信的多天线发射设计。本文考虑了由多个多天线窃听者窃听的预期多输入单输出信道的情况。具体来说,我们针对该方案的保密率最大化(SRM)解决了传输协方差优化问题。这个问题的挑战在于它是一个非凸优化问题。本文表明,通过将SRM问题重铸为半定程序(SDP),实际上可以以凸且易处理的方式解决SRM问题。我们解决的SRM问题是在完善的信道状态信息(CSI)的前提下。本文还讨论了不完善的CSI案例。我们考虑在球形CSI不确定性下的最坏情况鲁棒SRM公式,并且我们再次通过SDP为它开发了一个最佳解决方案。此外,我们的分析表明,对于理想和不完善的CSI情况,发射波束成形通常是所考虑场景的SRM的最佳发射策略。提供仿真结果来说明与某些次优发射设计相比,所提出的SDP解决方案的保密率性能提高。

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