Performance of Full-Duplex Cooperative NOMA Network with Nonlinear Energy Harvesting

Ujjawal Makhanpuri, Kamal Agrawal, Anand Jee, S. Prakriya
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引用次数: 1

Abstract

This paper investigates a cooperative non-orthogonal multiple access (C-NOMA) network consisting of a base station (BS), a far user (FU) and a full-duplex (FD) near user (NU). The NU does not use its own battery energy to relay to FU, and harvests energy using SWIPT principles from the BS. In this paper we consider a more practical nonlinear energy harvesting model for the first time in such a framework. We show that use of the idealized linear EH model leads to gross over-estimation of FU performance. Considering the time-splitting (TS) energy harvesting (EH) protocol, and modelling the self-interference at the FD NU, expressions are derived for the FU and NU outage probabilities in closed-form. Further, we show that by optimal selection of the TS parameter performance of FU can be further enhanced. Computer simulations confirm the accuracy of the derived analytical expressions.
非线性能量收集全双工协同NOMA网络性能研究
研究了一个基站(BS)、一个远端用户(FU)和一个全双工(FD)近端用户(NU)组成的协同非正交多址(C-NOMA)网络。NU不使用自己的电池能量来传递给FU,而是使用BS的SWIPT原理收集能量。在此框架下,我们首次考虑了一个更实用的非线性能量收集模型。我们表明,使用理想化的线性EH模型会导致对FU性能的总体高估。考虑时间分裂(TS)能量收集(EH)协议,并对FD NU处的自干扰进行建模,导出了FU和NU中断概率的封闭表达式。通过对TS参数的优化选择,可以进一步提高FU的性能。计算机模拟证实了推导出的解析表达式的准确性。
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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