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Secrecy Outage Analysis of Mixed RF-FSO Downlink SWIPT Systems

机译:混合RF-FSO下行SWIPT系统的保密中断分析

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We analyze a secure dual-hop mixed radio frequency-free space optical (RF-FSO) downlink simultaneous wireless information and power transfer system. The FSO link and all RF links experience Gamma–Gamma, independent, and identical Nakagami-$m$fading, respectively. We analyze the effects of atmospheric turbulence, pointing error, detection technology, path loss, and energy harvesting on secrecy performance. Signal-to-noise ratios at both the legitimate and illegitimate receivers are not independent since they are both simultaneously influenced by the FSO link. We derive the closed-form expression of the secrecy outage probability (SOP) as well as the asymptotic result for SOP when signal-to-noise ratios at relay and legitimate destinations tend to infinity. Monte-Carlo simulations are performed to verify the accuracy of our analysis. The results show that the secrecy diversity order (SDO) depends on the fading parameter of the relay-destination link and the number of the destination’s antennas. In addition, the SDO also depends on the fading parameters, the pointing error parameter, and the detection type of the FSO link.
机译:我们分析了一种安全的双跳混合无射频空间光(RF-FSO)下行链路同时无线信息和功率传输系统。 FSO链接和所有RF链接都经历Gamma–Gamma,独立且相同的Nakagami- n $ m $ nfading。我们分析了大气湍流,指向误差,检测技术,路径损耗和能量收集对保密性能的影响。合法接收者和非法接收者的信噪比都不是独立的,因为它们都同时受到FSO链路的影响。当中继站和合法目的地的信噪比趋于无穷大时,我们得出保密中断概率(SOP)的闭式表达以及SOP的渐近结果。进行蒙特卡洛模拟以验证我们分析的准确性。结果表明,保密分集阶数(SDO)取决于中继目的地链路的衰落参数和目标天线的数量。另外,SDO还取决于衰落参数,指向错误参数和FSO链路的检测类型。

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