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Ergodic Secrecy Rates of the Full-Duplex AF and DF Relay Wire-Tap Fading Channels

机译:全双工AF和DF中继窃听衰落通道的遍历保密率

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This paper investigates the secrecy rate of a relay network consisting of four nodes: a source node, a destination node, an eavesdropper, and a trusted relay operating in full-duplex (FD) mode. Attention is paid to ergodic Rayleigh fading channels where the channel gains change randomly over time and they are available at the receivers but not the transmitters. To deal with fading, we first use a simple technique to calculate the expectation of an exponentially distributed random variable. Using this result, the ergodic secrecy rates of the considered FD relay channel are then established in closed-form for both cases of amplify-and-forward (AF) and decode-and-forward (DF) relaying. Numerical results show that the proposed method provides a simple yet effective way to compute the ergodic secrecy rate without the need of lengthy Monte Carlo simulations. The established closed-forms can also be exploited to determine the optimal power allocation schemes among the source and relay nodes for further secrecy enhancements.
机译:本文研究了由四个节点组成的中继网络的保密率:源节点,目的节点,窃听者和以全双工(FD)模式运行的受信任中继。注意遍历性瑞利衰落信道,其中信道增益随时间随机变化,并且它们在接收器处可用,但在发送器处不可用。为了处理衰落,我们首先使用一种简单的技术来计算指数分布的随机变量的期望值。使用此结果,然后在放大转发(AF)和解码转发(DF)两种情况下,以封闭形式建立考虑的FD中继通道的遍历机密率。数值结果表明,所提出的方法提供了一种简单而有效的方法来计算遍历保密率,而无需进行冗长的蒙特卡洛模拟。还可以利用已建立的封闭形式来确定源节点和中继节点之间的最佳功率分配方案,以进一步提高保密性。

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