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Improving Wireless Secrecy Rate via Full-Duplex Relay-Assisted Protocols

机译:通过全双工中继辅助协议提高无线保密率

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In this paper, we examine the use of a friendly full-duplex (FD) relay to increase the secrecy rate over a fading channel between the legitimate source and the destination in the presence of residual self-interference (SI) and eavesdropper. In particular, we consider two different protocols based on the FD capability of relay: 1) FD transmission (FDT), in which the FD-Relay receives and sends data concurrently; 2) FD-Relay with jamming (FDJ), where first, the FD-Relay simultaneously receives data and sends jamming to the eavesdropper; then, it forwards the data, while the source jams the eavesdropper. We first develop the secrecy rate expressions for half-duplex transmission (HDT), half-duplex with jamming (HDJ), FDT, and FDJ relaying protocols, and then use them to derive their performance properties in terms of the channel gains between nodes, eavesdropper types, and more importantly, the SI level in FD-Relay. We further investigate the non-convex power allocation problems for the developed FDT and FDJ to maximize the secrecy rate under the power constraints. In particular, we develop an efficient iterative algorithm based on the difference-of-two-concave-functions programming. Analytical and simulation results show the strong influence of SI level on the achieved secrecy rate of the FDT and the FDJ. For sufficiently low SI, FDT achieves a much higher secrecy rate than FDJ, HDJ, and HDT. However, for higher SI, FDJ becomes more effective in enhancing the achieved secrecy rate. The results also indicate that adaptive power allocation can significantly improve the performance and confirm that the proposed FDT and FDJ outperform the HDT and the HDJ.
机译:在本文中,我们研究了使用友好的全双工(FD)中继来增加存在剩余自我干扰(SI)和窃听者的情况下,合法源与目标之间的衰落信道上的保密率。特别是,我们基于中继的FD功能考虑两种不同的协议:1)FD传输(FDT),其中FD-Relay同时接收和发送数据; 2)带有干扰的FD-中继(FDJ),首先,FD-中继同时接收数据并将干扰发送到窃听者;然后,它转发数据,而源卡住了窃听者。我们首先开发半双工传输(HDT),带干扰的半双工(HDJ),FDT和FDJ中继协议的保密率表达式,然后使用它们根据节点之间的信道增益来导出其性能属性,窃听器类型,更重要的是FD-Relay中的SI级别。我们将进一步研究已开发的FDT和FDJ的非凸功率分配问题,以在功率约束下最大化保密率。特别是,我们基于二凹函数差异编程开发了一种有效的迭代算法。分析和仿真结果表明,SI级别对FDT和FDJ的保密率具有很大的影响。对于足够低的SI,FDT的保密率要比FDJ,HDJ和HDT高得多。但是,对于更高的SI,FDJ在提高实现的保密率方面变得更加有效。结果还表明,自适应功率分配可以显着改善性能,并确认所提出的FDT和FDJ优于HDT和HDJ。

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