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Application of NOMA in Wireless System with Wireless Power Transfer Scheme: Outage and Ergodic Capacity Performance Analysis

机译:NOMA在具有无线功率传输方案的无线系统中的应用:中断和遍历容量性能分析

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摘要

Non-orthogonal multiple access (NOMA) and energy harvesting (EH) are combined to introduce a dual-hop wireless sensor system. In particular, this paper considers a novel EH protocol based on time power switching-based relaying (TPSR) architecture for amplify-and-forward (AF) mode. We introduce a novel system model presenting wireless network with impacts of energy harvesting fractions and derive analytical expressions for outage probability and ergodic rate for the information transmission link. It confirmed that the right selection of power allocation for NOMA users can be performed to obtain optimal outage and ergodic capacity performance. Theoretical results show that, in comparison with the conventional solutions, the proposed model can achieve acceptable outage performance for sufficiently small threshold signal to noise ratio (SNR) with condition of controlling time switching fractions and power splitting fractions appropriately in considered TPSR protocol. We also examine the impacts of transmitting power at source, transmission rate, the other key parameters of TPSR to outage, and ergodic performance. Simulation results are presented to corroborate the proposed system.
机译:非正交多路访问(NOMA)和能量收集(EH)结合在一起,引入了双跳无线传感器系统。特别是,本文考虑了一种基于基于时间功率切换的中继(TPSR)架构的新颖EH协议,用于放大转发(AF)模式。我们介绍了一种新颖的系统模型,该模型提出了一种具有能量收集分数影响的无线网络,并得出了信息传输链路的断电概率和遍历率的解析表达式。它确认可以为NOMA用户正确选择功率分配,以获得最佳的停电和遍历容量性能。理论结果表明,与常规解决方案相比,该模型在适当考虑控制TPSR协议的时间切换比例和功率分配比例的条件下,对于足够小的阈值信噪比(SNR)可以实现可接受的中断性能。我们还检查了源头发射功率,传输速率,TPSR的其他关键参数对断电以及遍历性能的影响。仿真结果表明了所提出的系统的正确性。

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