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Transmission mode selection scheme for physical layer security in multi-user multi-relay systems

机译:多用户多中继系统中物理层安全性的传输模式选择方案

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We study a relay and user selection scheme to improve the secrecy performance of cooperative multi-user multiple amplify-and-forward (AF) relay network. Nevertheless, relay transmission is highly susceptible to eavesdropping since confidential information is broadcasted twice, i.e., by the source and the relay. In particular, we propose a cooperative jamming aided secure transmission through the relay path. Furthermore, with the presence of the direct path, a transmission mode selection scheme is elaborated in such a way to reduce the amount of information leaked to non-selected users in the system, who may overhear the source message as eavesdroppers. Specifically, the selected relay is only activated when it has better secrecy performance than the source. We study the impact of outdated channel state information (CSI) on the system by deriving a closed-form lower bound for the secrecy outage probability (SOP). By investigating the effect of the jamming power level and the correlation coefficients imbalance, a comparison reveals that the proposed scheme outperforms the fixed transmission modes and its signal-to-noise ratio based counterpart. It is shown that the secrecy outage probability can be decreased as the number of destinations grows unless the number of relays is small. Importantly, optimal relay location and jamming power allocation significantly enhance the secrecy performance.
机译:我们研究了一种中继和用户选择方案,以提高协作多用户多重放大转发(AF)中继网络的保密性能。然而,由于机密信息被两次广播,即由源和中继器广播,因此中继传输极易被窃听。特别是,我们提出了一种通过中继路径的协作干扰辅助安全传输。此外,在存在直接路径的情况下,精心设计了一种传输模式选择方案,以减少泄漏给系统中未选择用户的信息量,这些用户可能会偷听作为窃听者的源消息。具体而言,仅当所选继电器具有比源更好的保密性能时,才会激活所选继电器。我们通过得出保密中断概率(SOP)的闭式下限来研究过时的信道状态信息(CSI)对系统的影响。通过研究干扰功率电平和相关系数不平衡的影响,比较表明,该方案优于固定传输模式及其基于信噪比的对应方案。结果表明,除非中继站数量少,否则随着目的地数量的增加,可以降低保密中断的概率。重要的是,最佳的继电器位置和干扰功率分配可显着提高保密性能。

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