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Physical-Layer Security in Distributed Wireless Networks Using Matching Theory

机译:基于匹配理论的分布式无线网络物理层安全性

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We consider the use of physical-layer security in a wireless communication system where multiple jamming nodes assist multiple source-destination nodes in combating unwanted eavesdropping from a single eavesdropper. In particular, we propose a distributed algorithm that matches each source-destination pair with a particular jammer. Our algorithm caters for three channel state information (CSI) assumptions: global CSI, local CSI, and local CSI without the eavesdropper channel. We prove that our algorithm has many desirable properties. First, the outcome of the proposed algorithm results in a stable matching, which is important if the source and jamming nodes are selfish. Second, the secrecy rate of the proposed algorithm converges to the secrecy rate of a centralized optimal solution, if the price step-number is sufficiently small. Third, our algorithm converges only after a small number of iterations, and its overhead is relatively small. Fourth, our algorithm has a significantly lower complexity than a centralized optimal approach.
机译:我们考虑在无线通信系统中使用物理层安全性,在无线通信系统中,多个干扰节点可协助多个源目标节点对抗来自单个窃听者的有害窃听。特别是,我们提出了一种分布式算法,该算法将每个源-目标对与一个特定的干扰信号进行匹配。我们的算法可满足三种信道状态信息(CSI)假设:全局CSI,本地CSI和没有窃听者通道的本地CSI。我们证明了我们的算法具有许多理想的特性。首先,所提出算法的结果导致稳定的匹配,这在源节点和干扰节点自私的情况下非常重要。其次,如果价格步数足够小,则所提出算法的保密率收敛于集中式最优解的保密率。第三,我们的算法仅在经过少量迭代后才收敛,并且其开销相对较小。第四,我们的算法比集中式优化方法的复杂度低得多。

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