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Secure Relay Selection of Cognitive Two-Way Denoise-and-Forward Relaying Networks

机译:安全继电器选择认知双向代盘 - 前进的中继网络

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摘要

In this paper, secrecy performance of a cognitive two-way denoise-and-forward relaying network consisting of two primary user (PT and PD) nodes, two secondary source (SA and SB) nodes, multiple secondary relay nodes and an eavesdropper (E) node is considered, where SA and SB exchange their messages with the help of one of the relays using a two-way relaying scheme. The eavesdropper tries to wiretap the information transmitted between SA and SB. To improve secrecy performance of the network, two relay selection schemes called maximum sum rate and maximum secrecy capacity based relay selection (MSRRS and MSCRS) are proposed and analyzed in terms of intercept probability. It is proved that the MSRRS and MSCRS schemes have the same secrecy performance. Two parameters called average number gain and average cost gain are proposed to show the performance of the proposed relay selection schemes. Numerical results demonstrated that with 10 relay nodes, the proposed relay selection schemes can achieve, respectively, 3.7dB and 1.9dB's improvements in terms of the reduced intercept probability and the enhanced secrecy capacity compared to the traditional round-robin scheme.
机译:在本文中,由两个主用户(PT和PD)节点,两个二次源(SA和SB)节点,多个二级中继节点和窃听器(E )考虑节点,其中SA和SB在使用双向中继方案的帮助下,其中一个继电器的帮助交换。窃听器尝试窃听在SA和SB之间传输的信息。为了提高网络的保密性能,提出了两个称为最大总和率和基于最大保密容量的中继选择(MSRRS和MSCRS)的中继选择方案,并在拦截概率方面进行分析。事实证明,MSRRS和MSCRS方案具有相同的保密性能。提出了两个称为平均数增益和平均成本增益的参数,以显示所提出的继电器选择方案的性能。数值结果证明,对于10个中继节点,所提出的继电器选择方案可以分别为3.7dB和1.9dB,与传统的循环方案相比减少截距概率和增强的秘密容量。

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