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首页> 外文期刊>Signal Processing, IEEE Transactions on >Robust Cooperative Beamforming and Artificial Noise Design for Physical-Layer Secrecy in AF Multi-Antenna Multi-Relay Networks
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Robust Cooperative Beamforming and Artificial Noise Design for Physical-Layer Secrecy in AF Multi-Antenna Multi-Relay Networks

机译:AF多天线多中继网络中物理层保密性的鲁棒协作波束成形和人工噪声设计

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摘要

This paper is concerned with an optimization problem in a two-hop relay wiretap channel, wherein multiple multi-antenna relays collaboratively amplify and forward (AF) information from a single-antenna source to a single-antenna destination, and at the same time emit artificial noise (AN) to improve physical-layer information security in the presence of multiple multi-antenna eavesdroppers (or Eves). More specifically, the problem is to simultaneously optimize the AF matrices and AN covariances for secrecy rate maximization, with robustness against imperfect channel state information of Eves via a worst-case robust formulation. Such a problem is nonconvex, and we propose a polynomial-time optimization solution based on a two-level optimization approach and semidefinite relaxation (SDR). In particular, while SDR is generally an approximation technique, we prove that SDR is optimal in the specific context here. This desirable result is obtained by careful reformulation and Karush-Kuhn-Tucker optimality analysis, where, rather interestingly, AN is found to be instrumental in providing guarantee of SDR optimality. Simulation results are provided, and the results show that the proposed joint AF-AN solution can attain considerably higher achievable secrecy rates than some existing suboptimal designs.
机译:本文关注的是两跳中继窃听通道中的优化问题,其中多个多天线中继协同放大并转发(AF)信息从单天线源到单天线目的地,并同时发射人工噪声(AN),用于在存在多个多天线窃听器(或Eves)的情况下提高物理层信息的安全性。更具体地说,问题是要同时优化AF矩阵和AN协方差以实现保密率最大化,并通过最坏情况的鲁棒公式针对Eves的不完善通道状态信息提供鲁棒性。这个问题是非凸的,我们提出一种基于两级优化方法和半定松弛(SDR)的多项式时间优化解决方案。特别是,尽管SDR通常是一种近似技术,但我们证明SDR在此处的特定上下文中是最佳的。通过仔细的重新设计和Karush-Kuhn-Tucker最优性分析可获得此理想结果,而有趣的是,AN被发现有助于提供SDR最优性。提供了仿真结果,结果表明,与某些现有的次优设计相比,所提出的联合AF-AN解决方案可以实现更高的保密率。

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