Destination assisted cooperative jamming for wireless physical layer security

Yupeng Liu, A. Petropulu
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引用次数: 150

Abstract

A wireless network with one source, one destination, one eavesdropper and multiple decode-and-forward (DF) relays is considered. A two-slot cooperative relaying scheme is proposed that targets at maximizing the secrecy rate. In the first slot, the source transmits the information bearing signal, and at the same time, it cooperates with the destination in jamming the eavesdropper without creating interference at the relay. In the second slot, one optimally selected relay retransmits the decoded source signal, and at the same time, it cooperates with the source to jam the eavesdropper without creating interference at the destination. For the beamforming, no eavesdropper channel information is required. Optimal relay selection and also optimal power allocation among the first/second slot data signal and jamming noise are proposed. It is shown that the system secrecy rate of the proposed scheme scales with the total system power, P0 and the number of available relays, K, according to log2(1 + P0/8 log K) - 1.6252bps.
无线物理层安全的目标辅助协同干扰
考虑一个具有一个源、一个目的、一个窃听器和多个DF中继的无线网络。提出了一种以保密率最大化为目标的双时隙协同中继方案。在第一个插槽中,源发送承载信息的信号,同时,它与目的配合,在不对中继产生干扰的情况下对窃听者进行干扰。在第二个时隙中,一个最优选择的中继对解码后的源信号进行重传,同时与源信号配合,在不对目标产生干扰的情况下对窃听者进行干扰。对于波束形成,不需要窃听信道信息。提出了中继的最优选择和第一/第二时隙数据信号和干扰噪声之间的最优功率分配。结果表明,该方案的系统保密率随系统总功率P0和可用中继数K的变化而变化,取值为log2(1 + P0/8 log K) - 1.6252bps。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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