具有硬件缺陷的swift多用户物联网网络在Nakagami-m衰落信道上的吞吐量分析

Preeti Kharwar, S. Yadav, N. Purohit, D. Gurjar
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引用次数: 0

摘要

本文研究了在收发器硬件损坏的情况下,多用户物联网(IoT)中继网络的吞吐量性能,其中K IoT用户通过同时启用无线信息和功率传输(SWIPT)的中继与目的地通信。特别是,我们在启用swipt的中继节点上利用放大转发和解码转发协议以及时间交换和功率分割方案。在考虑的系统设置下,我们通过i)检查延迟限制传输模式下的中断概率,ii)检查延迟容忍传输模式下的遍历容量,在Nakagami-m衰落下解析导出吞吐量表达式。数值和模拟研究验证了我们的理论发现,并提供了对各种涉及系统/通道参数的系统吞吐量性能的几个观察结果。
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Throughput Analysis of SWIPT-Enabled Multiuser IoT Networks With Hardware Imperfections Over Nakagami-m Fading Channels
This paper examines the throughput performance of multiuser Internet of Things (IoT) relay networks in the presence of transceiver hardware impairments, where K IoT users communicate with a destination via a simultaneous wireless information and power transfer (SWIPT) enabled relay. In particular, we exploit both amplify-and-forward and decode-and-forward protocols along with time switching and power splitting schemes at the SWIPT-enabled relay node. Under the considered system setup, we analytically derive the throughput expressions by i) examining the outage probability under delay-limited transmission mode, and ii) examining the ergodic capacity under delay-tolerant transmission mode, over Nakagami-m fading. The numerical and simulation studies verify our theoretical findings and provide several observations into the system’s throughput performance for various involved system/channel parameters.
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