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Secure communication in untrusted relay selection networks with wireless energy harvesting

机译:具有无线能量收集功能的不可信中继选择网络中的安全通信

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摘要

In this paper, we consider the secrecy performance of an energy-harvesting relaying system with Kth best partial relay selection where the communication of a multi-antenna source-destination pair is assisted via single-antenna untrusted relays. To protect confidential source messages from untrusted relays, transmit beamforming and destination jamming signals are used. The relays are energy-constrained nodes that use the power-splitting policy to harvest energy through the wireless signals from both the source and destination. For performance evaluation, closed-form expressions of the secrecy outage probability and average secrecy capacity (ASC) are derived for Nakagami-m fading channels. The analytical results are confirmed via Monte Carlo simulations. Numerical results provide valuable insights into the effect of various system parameters, such as relay location, number of relays, and power splitting ratio, on the secrecy performance. Specifically, the maximum ASC is achieved when the relay is located between the source and destination.
机译:在本文中,我们考虑具有Kth最佳部分中继选择的能量收集中继系统的保密性能,其中通过单天线不受信任的中继来协助多天线源-目标对的通信。为了保护机密源消息不受不信任中继的干扰,使用了传输波束成形和目标干扰信号。中继是能量受限的节点,使用功率分配策略通过来自源和目标的无线信号收集能量。为了进行性能评估,推导了Nakagami-m衰落信道的保密中断概率和平均保密容量(ASC)的闭式表达式。分析结果通过蒙特卡洛模拟得到证实。数值结果为各种系统参数(例如继电器位置,继电器数量和功率分配比)对保密性能的影响提供了宝贵的见解。具体而言,当中继位于源和目标之间时,可以实现最大ASC。

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