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Mixed FSO/RF SIMO SWIPT Decode-and-Forward Relaying Systems

机译:混合FSO / RF SIMO SWIPT解码转发中继系统

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This article focuses on a dual-hop simultaneous wireless information and power transfer (SWIPT) single-input-multiple-output (SIMO) system having one free-space optical (FSO) link followed by one radio frequency (RF) link. We assume that RF source conveys secure information to the FSO receiver through an intermediate relay equipped with multiple antenna, which exploits the decode-and-forward relaying technique. The FSO link endures pointing error and atmospheric turbulence, which is modeled as Gamma-Gamma distribution, and RF link suffers from Fisher-Snedecor F fading. We investigate the consequences of number of antennas, pointing error, atmospheric turbulence, detection technology, electrical signal-to-noise ratio of FSO link, and energy harvesting on the performance of proposed SIMO mixed FSO/RF SWIPT framework. More specifically, we derive the unified analytical expressions for statistical channel characteristics such as probability density function, moments, amount of fading, outage probability, and ergodic capacity. Based on these results, physical layer security analysis is carried out, and the analytical expressions for secure outage probability and strictly positive secrecy capacity are derived.
机译:本文重点介绍一种双跳同时无线信息和功率传输(SWIPT)单输入多输出(SIMO)系统,该系统具有一个自由空间光(FSO)链路和一个射频(RF)链路。我们假设RF源通过配备有多个天线的中间中继将安全信息传送到FSO接收器,该中继利用了解码转发中继技术。 FSO链路承受指向误差和大气湍流(建模为Gamma-Gamma分布),RF链路遭受Fisher-Snedecor F衰落。我们研究了天线数量,指向误差,大气湍流,检测技术,FSO链路的电信噪比以及能量收集对拟议的SIMO混合FSO / RF SWIPT框架性能的影响。更具体地说,我们导出统计信道特征(如概率密度函数,矩,衰落量,中断概率和遍历容量)的统一分析表达式。基于这些结果,进行了物理层安全性分析,并推导了安全中断概率和严格正保密能力的解析表达式。

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