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Physical Layer Security of a Two-Hop Mixed RF-FSO System in a Cognitive Radio Network

机译:认知无线电网络中两跳混合RF-FSO系统的物理层安全性

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In this paper, the physical layer (PHY)security performance of a dual-hop cooperative relaying in a cognitive-radio system in the presence of an eavesdropper is investigated. The dual-hop transmission is composed of an asymmetric radio frequency (RF)link and a free space optical (FSO)link. In the considered system, an unlicensed secondary user (SU)uses the spectrum which is shared by a licensed primary user (PU)in a controlled manner to keep the interference at PU receiver, below a predefined value. Furthermore, among M available relays, one relay with the best end-to-end signal-to-noise-ratio (SNR)is selected for transmission. It is assumed that all of the RF links follow Rayleigh fading and all of the FSO links follow Gamma-Gamma distribution. Simulations results for some important security metrics, such as the average secrecy capacity (SC), and secrecy outage probability (SOP)are presented, where some practical issues of FSO links such as atmospheric turbulence, and pointing errors are taken into consideration.
机译:本文研究了存在窃听者的认知无线电系统中双跳协作中继的物理层(PHY)安全性能。双跳传输由非对称射频(RF)链路和自由空间光(FSO)链路组成。在所考虑的系统中,未许可的次要用户(SU)使用由许可的主要用户(PU)以受控方式共享的频谱,以将PU接收机处的干扰保持在预定值以下。此外,在M个可用的中继中,选择了一个具有最佳端到端信噪比(SNR)的中继进行传输。假定所有RF链路都遵循瑞利衰落,而所有FSO链路都遵循Gamma-Gamma分布。给出了一些重要安全度量的仿真结果,例如平均保密容量(SC)和保密中断概率(SOP),其中考虑了FSO链接的一些实际问题,例如大气湍流和指向误差。

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