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Robust secure switching transmission in multi-antenna relaying systems: cooperative jamming or decode-and-forward beamforming

机译:多天线中继系统中的鲁棒安全切换传输:协作干扰或解码转发波束成形

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摘要

In this study, the authors investigate the physical layer security for safeguarding secure transmission in multi-antenna relaying networks with imperfect channel state information (CSI). Different from traditional strategies in multi-antenna relaying systems, which would terminate the communication if the relay could not decode the signals successfully, the authors propose robust secure transmission strategy which switches between cooperative jamming (CJ) and decode-and-forward (DF) beamforming. Specifically, if the received signal-to-noise ratio at the relay is lower than a predefined threshold, it will impose CJ signals on potential eavesdropper, otherwise the relay would operate DF beamforming. The authors’ objective is to maximise secrecy rate and minimise secrecy outage probability in different practical communication scenarios with relaxed or strict time-delay constraint. Thus, given the unavailability of the perfect eavesdropping CSI, the authors propose a worst-case robust design and a statistical-approach robust design based on secrecy rate and secrecy outage criterion, respectively. In addition, a traditional DF robust scheme and a non-robust scheme are also considered as benchmarks. Simulation results verify that the proposed scheme significantly outperforms the traditional DF robust scheme and the non-robust scheme.
机译:在这项研究中,作者研究了物理层安全性,以保护具有不完善信道状态信息(CSI)的多天线中继网络中的安全传输。与多天线中继系统中的传统策略不同,在中继器无法成功解码信号的情况下,传统策略会终止通信,作者提出了鲁棒的安全传输策略,该策略可在协作干扰(CJ)和解码转发(DF)之间切换波束成形。具体来说,如果中继器上收到的信噪比低于预定义的阈值,它将在潜在的窃听者身上强加CJ信号,否则中继器将运行DF波束成形。作者的目标是在宽松或严格的时间延迟约束下,在不同的实际通信情况下最大化机密率,并将机密中断的可能性降至最低。因此,鉴于无法获得完美的监听CSI,作者分别提出了基于保密率和保密中断准则的最坏情况鲁棒设计和统计方法鲁棒设计。另外,传统的DF稳健方案和非稳健方案也被视为基准。仿真结果表明,该方案明显优于传统的DF稳健方案和非稳健方案。

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