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Performance Analysis of SWIPT Networks over Composite Fading Channels

机译:复合衰落渠道SWIPT网络的性能分析

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This paper studies the performance of dual-hop decode-and-forward (DF) simultaneous wireless information and power transfer (SWIPT) systems over Fisher-Snedecor $mathcal{F}$ composite fading channels. We commence by deriving closed-form expressions of the cumulative distribution function (CDF) and the probability density function (PDF) of the product of two $mathcal{F}$ random variables. These statistics are then used to derive closed-form expressions for the ergodic capacity and ergodic outage probability of the system under consideration. Three well-known energy harvesting (EH) relaying protocols are considered; namely time-switching relaying, power splitting relaying and ideal relaying receiver. The analysis provides insights into the effect of the key parameters on the overall network performance. Monte-Carlo simulations are provided throughout to validate the correctness of our analysis. The results show that the performance of the system in terms of ergodic capacity and outage probability improves as the fading and shadowing severity reduce for all EH protocols considered. The results further demonstrate the need to balance the relay distance with channel conditions of the links to minimise the system outage.
机译:本文研究了双跳解码(DF)同时无线信息和电力传输(SWIPT)系统在Fisher-Snedecor上的表现性能 $ mathcal {f} $ 复合褪色渠道。我们开始通过衍生累积分布函数(CDF)的闭合表达和两个产品的概率密度函数(PDF)的表达式 $ mathcal {f} $ 随机变量。然后,这些统计数据用于导出所考虑的系统的ergodic能力和ergodic中断概率的闭合形式表达。考虑了三种众所周知的能量收集(EH)中继方案;即时间开关中继,功率分配中继和理想的中继接收器。分析为关键参数对整体网络性能的影响提供了见解。蒙特卡罗仿真提供了验证我们分析的正确性。结果表明,在ergodic容量和中断概率方面的性能随着所考虑的所有EH协议的衰落和阴影严重程度而改善。结果进一步证明需要使用链路的通道条件平衡继电器距离,以最大限度地减少系统中断。

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