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Secure Transmission in Wireless Powered Massive MIMO Relaying Systems: Performance Analysis and Optimization

机译:无线供电的大规模MIMO中继系统中的安全传输:性能分析和优化

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摘要

In this paper, we address the problem of securing information transmission in very adverse environments, i.e., no eavesdropper channel state information (CSI) and imperfect legitimate channel CSI, by introducing a massive multiple-input–multiple-output (M-MIMO) relay. The relay is powered through wireless power transfer from the source, such that it can flexibly adjust its position according to the secrecy requirement. The benefits of a M-MIMO relay are fully exploited to enhance both power transfer efficiency and information transmission security. In particular, the challenging issues incurred by short interception distance and long transfer distance are well addressed simultaneously. The focus of this paper is on investigating the secrecy performance of two classical relaying protocols, namely amplify-and-forward (AF) and decode-and-forward (DF), and obtaining explicit expressions of secrecy outage capacity in terms of transmit power, channel condition, and antenna number. Furthermore, we propose two effective performance optimization schemes, i.e., power control at the source, and relaying protocol switch at the relay. Finally, our theoretical claims are validated by simulation results.
机译:在本文中,我们通过引入大规模多输入多输出(M-MIMO)中继,解决了在非常不利的环境中确保信息传输的问题,即没有窃听者通道状态信息(CSI)和不完善的合法通道CSI 。中继通过从源进行的无线功率传输来供电,从而可以根据保密要求灵活地调整其位置。充分利用了M-MIMO中继的优势来增强功率传输效率和信息传输安全性。尤其是,同时解决了短截距和长转移距离带来的挑战性问题。本文的重点是研究两种经典中继协议(即放大转发(AF)和解码转发(DF))的保密性能,并根据发射功率获得保密中断容量的明确表示,信道状况和天线号。此外,我们提出了两种有效的性能优化方案,即在源处进行功率控制和在中继处进行中继协议切换。最后,我们的理论主张得到了仿真结果的验证。

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