Throughput improvement by cluster-based multihop wireless networks with energy harvesting relays

Vikash Singh, H. Ochiai
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引用次数: 5

Abstract

In this work, we propose a cluster-based multihop relaying with partial relay selection (PRS) scheme for an energy harvesting (EH) relaying network. We analyze the performance in the framework of the decode-and-forward (DF) relaying with adaptive power splitting (APS) protocol over symmetric and asymmetric fading channel models. Through extensive numerical analysis, we show that the proposed scheme can substantially outperform the conventional multihop relaying approach without clustering. Furthermore, we demonstrate that the proposed scheme can compensate for the performance loss due to poor RF-to-DC conversion efficiency by exploiting the spatial diversity provided by the broadcast-oriented nature of the RF signal. It is also shown that the conventional belief that the multihop relaying networks over asymmetric fading channel achieve maximum throughput in Rician/Rayleigh fading environment (for source-relay link/the rest of the links) does not necessarily apply in the case of the proposed system.
带能量收集中继的集群多跳无线网络吞吐量改进
在这项工作中,我们提出了一种基于集群的多跳中继与部分中继选择(PRS)方案,用于能量收集(EH)中继网络。分析了在对称和非对称衰落信道模型下,采用自适应功率分割(APS)协议的译码转发(DF)中继的性能。通过广泛的数值分析,我们表明该方案可以大大优于传统的无聚类的多跳中继方法。此外,我们证明了该方案可以通过利用射频信号面向广播的特性提供的空间分集来补偿由于RF- dc转换效率差而造成的性能损失。研究还表明,传统观点认为非对称衰落信道上的多跳中继网络在(源中继链路/其余链路)瑞利衰落环境下获得最大吞吐量并不一定适用于所提出的系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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