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Non-Orthogonal Multiple Access (NOMA) in Uplink Poisson Cellular Networks With Power Control

机译:具有功率控制的上行泊松蜂窝网络中的非正交多址访问(NOMA)

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摘要

This paper develops an analytical framework for multi-cell uplink NOMA systems based on stochastic geometry. We propose two scenarios for the clustering of NOMA UEs and derive the Laplace transform of the inter-cell interference taking into account uplink power control. We utilize two different ordering techniques, namely mean signal power- (MSP-) and instantaneous signal-to-intercell-interference-and-noise-ratio- (ISINR-) based, for the successive interference cancellation process at the BSs. For each technique, we present a signal-to-interference-and-noise-ratio (SINR) analysis and derive the transmission success probabilities for the NOMA UEs. We show that uplink power control, which generally reduces the signal power disparity between UEs, does not necessarily degrade the NOMA performance. We discuss how UE clustering and the power control exponent impact this finding. ISINR-based ordering, which jointly considers path loss, fading, inter-cell interference, and noise, is generally superior to MSP-based ordering. Moreover, we show that the advantage of NOMA vanishes when the target SINR exceeds a certain threshold. A comparison of the two UE clustering scenarios indicates that excluding the UEs which are relatively far from the serving BS may improve the NOMA performance.
机译:本文为基于随机几何的多小区上行NOMA系统开发了一个分析框架。我们提出了两种用于NOMA UE集群的方案,并考虑了上行链路功率控制,得出了小区间干扰的拉普拉斯变换。对于基站处的连续干扰消除过程,我们利用两种不同的排序技术,即平均信号功率(MSP-)和瞬时信号间干​​扰和噪声比(ISINR-)。对于每种技术,我们提出一种信号干扰比和噪声比(SINR)分析,并得出NOMA UE的传输成功概率。我们表明,通常减少UE之间信号功率差异的上行链路功率控制并不一定会降低NOMA性能。我们讨论了UE群集和功率控制指数如何影响这一发现。基于ISINR的排序通常综合考虑基于MSP的排序,该排序综合考虑了路径损耗,衰落,小区间干扰和噪声。此外,我们表明,当目标SINR超过某个阈值时,NOMA的优势就会消失。两种UE群集场景的比较表明,排除距离服务BS相对较远的UE可以改善NOMA性能。

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