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On the Performance of Dual-Hop SWIPT-based Relaying System with Asymmetric Fading Conditions

机译:不对称衰落条件下基于双跳SWIPT的中继系统的性能研究

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This paper inspects the error rate and the capacity performance of a dual-hop energy harvesting (EH)-based fixed-gain amplify-and-forward relaying communication system, subject to fading impairments. We consider a source node (S) communicating with a destination node (D) via a relay node (R) equipped with a finite-size battery, which harvests energy from its received signal from S and uses it to power up its communication with D after amplification. Time-switching protocol is examined in the analysis for EH. In addition, the S-R and R-D hops are modeled by the Nakagami-m and $lpha-mu$ fading models, respectively. A closed-form expression for the cumulative distribution function of the end-to-end signal-to-noise ratio is derived, based on which novel exact and asymptotic closed-form formulas for the average symbol error rate and average channel capacity are derived. The derived expressions are validated through Monte Carlo simulations.
机译:本文研究了基于衰落损伤的基于双跳能量收集(EH)的固定增益放大转发中继通信系统的错误率和容量性能。我们考虑了一个源节点(S)通过一个装有有限大小电池的中继节点(R)与目的节点(D)进行通信,该中继节点从接收到的来自S的信号中收集能量,并利用它为与D的通信加电放大后。在EH分析中检查了时间切换协议。此外,分别通过Nakagami-m和$ \ alpha- \ mu $衰落模型对S-R和R-D跳进行建模。推导了端到端信噪比累积分布函数的闭式表达式,在此基础上,得出了平均符号误码率和平均信道容量的新颖精确渐近闭式公式。导出的表达式通过蒙特卡洛模拟进行了验证。

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