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Joint Relay Selection and Destination Assisted Cooperative Jamming with Power Allocation for Secure DF Relay Network

机译:安全DF中继网络的联合中继选择和目的地辅助协同干扰以及功率分配

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摘要

To enhance the physical-layer security of a decode-and-forward (DF) cooperative relay network in the presence of a potential eavesdropper, a joint relay selection and destination assisted cooperative jamming (CJ) scheme is proposed. In phase I, the source transmits its confidential signal, and concurrently, it cooperates with the friendly jammers and the destination to send jamming signals to confuse the eavesdropper without affecting the forwarding relay which is preselected. In phase II, the forwarding relay retransmits the decoded signal, and simultaneously, the particular relay cooperates with the friendly jammers to send jamming signal to confuse the eavesdropper without affecting the destination. The achievable secrecy rate maximization (SRM) problem is investigated by optimally allocating the power between the data signal and jamming signals. Although SRM problem is non-convex, the power allocation problem can be solved by a bisection method together with a one-dimensional search. Optimal relay selection and suboptimal relay selection schemes are also proposed to further improve the secrecy rate. Simulation results are presented to show that the joint scheme can attain higher achievable secrecy rates than some existing works.
机译:为了在存在潜在窃听者的情况下增强解码转发(DF)协作中继网络的物理层安全性,提出了一种联合中继选择和目标辅助协作干扰(CJ)方案。在阶段I中,源发送其机密信号,与此同时,它与友好的干扰源和目的地协作以发送干扰信号以使窃听者感到困惑,而不会影响预选的转发中继。在阶段II中,转发中继器重新传输解码后的信号,同时,特定中继器与友好干扰器协作以发送干扰信号以混淆窃听者,而不会影响目的地。通过在数据信号和干扰信号之间最佳分配功率来研究可实现的保密率最大化(SRM)问题。尽管SRM问题是非凸的,但功率分配问题可以通过二分法和一维搜索来解决。还提出了最佳中继选择和次最佳中继选择方案,以进一步提高保密率。仿真结果表明,与现有技术相比,该联合方案可获得更高的保密率。

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