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首页> 外文期刊>Selected Topics in Signal Processing, IEEE Journal of >Sum Secrecy Rate Maximization for Full-Duplex Two-Way Relay Networks Using Alamouti-Based Rank-Two Beamforming
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Sum Secrecy Rate Maximization for Full-Duplex Two-Way Relay Networks Using Alamouti-Based Rank-Two Beamforming

机译:使用基于Alamouti的秩二波束成形的全双工双向中继网络的总保密率最大化

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摘要

Consider a two-way communication scenario where two single-antenna nodes, operating under full-duplex mode, exchange information to one another through the aid of a (full-duplex) multiantenna relay, and there is another single-antenna node who intends to eavesdrop. The relay employs artificial noise (AN) to interfere the eavesdropper's channel, and amplify-forward Alamouti-based rank-two beamforming to establish the two-way communication links of the legitimate nodes. Our problem is to optimize the rank-two beamformer and AN covariance for sum secrecy rate maximization (SSRM). This SSRM problem is nonconvex, and we develop an efficient solution approach using semidefinite relaxation (SDR) and minorization-maximization (MM). We prove that SDR is tight for the SSRM problem and, thus, introduces no loss. Also, we consider an inexact MM method where an approximate but computationally cheap MM solution update is used in place of the exact update in conventional MM. We show that this inexact MM method guarantees convergence to a stationary solution to the SSRM problem. The effectiveness of our proposed approach is further demonstrated by an energy-harvesting scenario extension, and by extensive simulation results.
机译:考虑一种双向通信方案,其中在全双工模式下工作的两个单天线节点通过(全双工)多天线中继相互交换信息,并且还有一个单天线节点打算窃听。中继采用人工噪声(AN)来干扰窃听者的通道,并放大基于Alamouti的二级秩波束成形,以建立合法节点的双向通信链路。我们的问题是优化二阶波束形成器和AN协方差,以实现总和保密率最大化(SSRM)。这个SSRM问题是非凸的,因此我们开发了一种使用半定松弛(SDR)和最小化最大化(MM)的有效解决方案。我们证明SDR对于SSRM问题是严格的,因此不会造成任何损失。此外,我们考虑了一种不精确的MM方法,其中使用了一个近似但计算量小的MM解决方案更新来代替传统MM中的精确更新。我们表明,这种不精确的MM方法可以保证收敛到SSRM问题的固定解。能量收集方案扩展以及广泛的仿真结果进一步证明了我们提出的方法的有效性。

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