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Artificial-Noise-Aided Secure MIMO Full-Duplex Relay Channels With Fixed-Power Transmissions

机译:具有固定功率传输的人工噪声辅助安全MIMO全双工中继信道

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摘要

This letter studies the physical-layer security of a full-duplex (FD) multiple-input multiple-output relay channel. A legitimate source node (Alice) communicates with her destination node (Bob) through an FD relay node in the presence of a cooperative FD jammer and a potential eavesdropper (Eve). The cooperative jammer is assumed to be an FD node that is solely charged by the ambient radio-frequency transmissions. We investigate the self-energy recycling at the cooperative jammer and derive a sufficient condition for the cooperative jammer to operate as a node with reliable energy supply. Without knowing the eavesdropper’s channel state information at the legitimate nodes, we propose a precoded artificial-noise (AN) injection scheme to secure the legitimate transmissions. The numerical results demonstrate that our proposed AN-aided secure scheme achieves a significant average secrecy rate improvement compared with the case of no cooperative jammer.
机译:这封信研究了全双工(FD)多输入多输出中继通道的物理层安全性。在存在协作FD干扰器和潜在的窃听者(Eve)的情况下,合法的源节点(Alice)通过FD中继节点与其目标节点(Bob)通信。假定协作干扰器是一个FD节点,该FD节点仅由周围的射频传输充电。我们研究了协作干扰器的自能量回收,并为协作干扰器作为具有可靠能量供应的节点运行提供了充分条件。在不知道合法节点处窃听者的信道状态信息的情况下,我们提出了一种预编码的人工噪声(AN)注入方案,以保护合法传输。数值结果表明,与无协作干扰器的情况相比,我们提出的AN辅助安全方案可显着提高平均保密率。

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