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Wireless-Powered Secure Transmission with Full-Duplex Relay and Imperfect Eavesdropper CSI

机译:具有全双工继电器的无线动力传输和Imperfect窃听器CSI

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This paper focuses on information security in an energy harvesting relay system, in which confidential signals are transmitted from a source node to its desired destination with the assistance of one full-duplex (FD) relay. To empower simultaneous wireless information and power transfer, the time-switching (TS) protocol is embraced and the energy-limited FD relay node is powered by energy signals emitted by the source node. With the obtained statistical eavesdropper channel state information (CSI), the ergodic secrecy rate and its approximate expression are derived. As the objective is maximizing the ergodic secrecy rate performance, source beamformers, TS coefficient and the power control factor at FD relay are jointly optimized. To tackle the framed non-convex problem, an alternative method is hence proposed, and closed-form solutions for beamformers, TS coefficient and power control factor are derived iteratively. Besides, the convergence of our proposed algorithm can be guaranteed and is also theoretically proved. Simulation results demonstrate that our iterative algorithm is effective and improves the system secrecy rate considerably.
机译:本文侧重于能量收集继电器系统中的信息安全性,其中在一个全双工(FD)中继的帮助下从源节点发送到其所需目的地的机密信号。为了使能够同步无线信息和功率传输,接收时间切换(TS)协议,并且能量限制的FD继电器节点由源节点发射的能量信号供电。利用所获得的统计窃听者信道状态信息(CSI),导出ergodic保密率及其近似表达。由于目标最大化ergodic保密率性能,因此联合优化了FD继电器的源波束形成器,TS系数和功率控制系数。为了解决帧的非凸面问题,因此提出了一种替代方法,并且迭代地推导出用于波束形成器,TS系数和功率控制系数的闭合液。此外,可以保证我们所提出的算法的收敛性,并且在理论上也证明了。仿真结果表明,我们的迭代算法有效并显着提高了系统保密率。

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