Performance Analysis of Multi-Relay Assisted IoT Networks in Mixed Fading Environments

Jiajia Huang, Fusheng Wei, Jingming Zhao, Huakun Que
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Abstract

This study delves into the realm of multi-relay assisted Internet of Things (IoT) networks within the context of mixed fading environments. Here, data transmission from the source to the destination is facilitated through a configuration involving multiple decode-and-forward relays. Specifically, our investigation revolves around mixed fading environments characterized by the first-hop relaying links conforming to a uniform distribution, while the second-hop relaying links exhibit Rayleigh fading. To bolster the overall efficacy of the network, we introduce two distinct relay selection criteria. The first criterion entails an optimal selection process hinging on the identification of the most proficient relay. This determination relies upon the evaluation of dual-hop relaying links. In contrast, the second criterion adopts a sub-optimal selection approach by singling out the optimal relay solely based on characteristics associated with the second-hop relaying links. The performance evaluation of the two aforementioned relay selection criteria entails the derivation of analytical expressions governing the system's outage probability. To validate the theoretical underpinnings presented in this research, we supplement our analysis with simulation results. Notably, our findings underscore the efficacy of augmenting network performance by augmenting the number of relays within the network topology.
混合衰减环境中的多中继辅助物联网网络性能分析
本研究深入探讨了混合衰减环境下的多中继辅助物联网(IoT)网络领域。在这里,通过涉及多个解码转发中继器的配置,促进了从源到目的地的数据传输。具体来说,我们的研究围绕混合衰落环境展开,其特点是第一跳中继链路符合均匀分布,而第二跳中继链路则表现为瑞利衰落。为了提高网络的整体效率,我们引入了两个不同的中继选择标准。第一种标准是以确定最熟练的中继站为基础的优化选择过程。这一判断依赖于对双跳中继链路的评估。与此相反,第二种标准采用次优选择方法,仅根据与第二跳中继链路相关的特性选出最佳中继。对上述两种中继选择标准进行性能评估,需要推导出有关系统中断概率的分析表达式。为了验证本研究提出的理论基础,我们用仿真结果对我们的分析进行了补充。值得注意的是,我们的研究结果强调了通过增加网络拓扑结构中的中继站数量来提高网络性能的有效性。
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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