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首页> 外文期刊>IEEE transactions on wireless communications >Downlink Analysis of NOMA-Enabled Cellular Networks With 3GPP-Inspired User Ranking
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Downlink Analysis of NOMA-Enabled Cellular Networks With 3GPP-Inspired User Ranking

机译:具有3GPP启动用户排名的支持NOMA的蜂窝网络的下行链路分析

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摘要

This paper provides a comprehensive downlink analysis of non-orthogonal multiple access (NOMA) enabled cellular networks using tools from stochastic geometry. As a part of this analysis, we develop a novel 3GPP-inspired user ranking technique to construct a user cluster for the non-orthogonal transmission by grouping users from the cell center (CC) and cell edge (CE) regions. This technique allows the pairing of users with distinct link qualities, which is imperative for harnessing NOMA performance gains. The analysis is performed from the perspective of the typical cell, which is significantly different from the standard stochastic geometry-based approach of analyzing the performance of the typical user. For this setting, we first derive the moments of the meta distributions for the CC and CE users under NOMA and orthogonal multiple access (OMA). Using this, we then derive the distributions of the transmission rates and mean packet delays under non-real time (NRT) and real-time (RT) service models, respectively, for both CC and CE users. Finally, we study two resource allocation (RA) techniques to maximize the cell sum-rate (CSR) under NRT service, and the sum effective capacity (SEC) under RT service. In addition to providing several useful design insights, our results demonstrate that NOMA provides improved rate region and higher CSR as compared to OMA. In addition, we also show that NOMA provides better SEC as compared to OMA for the higher user density.
机译:本文提供了使用来自随机几何形状的工具的非正交多址(NOMA)的非正交多址(NOMA)的全面的下行链路分析。作为该分析的一部分,我们开发了一种新颖的3GPP激发的用户排名技术,用于通过从单元中心(CC)和小区边缘(CE)区域分组用户来构造非正交传输的用户群集。该技术允许具有不同链路质量的用户配对,这对于利用NOMA性能增益,这是必要的。从典型电池的角度进行分析,这与分析典型用户性能的标准随机几何形状的方法显着不同。对于此设置,我们首先在NOMA和正交多次访问(OMA)下的CC和CE用户的元分布的时刻。使用此,我们将分别为CC和CE用户分别从非实时(NRT)和实时(RT)服务模型下的传输速率和平均分组延迟的分布。最后,我们研究了两个资源分配(RA)技术,以最大化NRT服务下的小区和速率(CSR),以及在RT服务下的总和有效容量(SEC)。除了提供几种有用的设计见解外,我们的结果表明,与OMA相比,NOMA提供了改善的率区域和更高的CSR。此外,我们还表明,与OMA相比,NOMA提供了更高的用户密度。

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