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Optimization of Time Splitting Based SWIPT in Battery-Assisted Full Duplex Relays

机译:基于电池辅助全双工继电器中的时间分配时间分离的优化

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This paper investigates the performance of a two-hop decode-and- forward full duplex relaying (FDR) network with a battery-assisted energy harvesting (EH) relay. We consider a practical scenario where the EH relay uses a limited amount of battery energy along with the harvested energy to enhance communication between the source and destination terminals. Utilizing time splitting (TS) protocol for EH, we analyze the performance of a dual-hop FDR system in terms of outage probability and throughput. Further, with fixed battery energy availability, we present closed-form expressions for the TSR parameter that maximizes throughput. For a desired target throughput, we show how the battery energy drawn and the TSR parameter can be chosen so as to extend battery lifetime. Computer simulation results demonstrate accuracy of the derived expressions.
机译:本文研究了双跳解码和前进的全双工中继(FDR)网络的性能,具有电池辅助的能量收集(EH)继电器。我们考虑一种实际情况,其中EH继电器使用有限量的电池能量以及收获的能量来增强源极和目的地终端之间的通信。利用EH的时间分离(TS)协议,我们在中断概率和吞吐量方面分析了双跳FDR系统的性能。此外,通过固定电池能量可用性,我们为最大化吞吐量的TSR参数提出了闭合表达式。对于所需的目标吞吐量,我们展示了如何选择绘制的电池能量和TSR参数以延长电池寿命。计算机仿真结果展示了衍生的表达式的准确性。

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