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Performance analysis of downlink and uplink decoupled access in clustered heterogeneous cellular networks

机译:集群异构蜂窝网络下行链路和上行链路的性能分析

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The performance of heterogeneous cellular networks (HCNs) is typically analyzed with the assumption that the users connect with the same base station in uplink and downlink. However, recent investigations have shown that downlink-uplink decoupling (DUDe) can provide network performance gains relative to the conventional coupled access. Many authors have evaluated HCN performance while assuming that the network users are distributed according to a homogeneous Poisson point process (HPPP). However, the HPPP cannot accurately model the uplink interference when the users are clustered in urban hotspots such as shopping malls and sports stadiums. This work investigates DUDe access for an HCN with user-clustering modeled by the Matern cluster process. We derive analytical expressions of the coverage probability and average throughput for DUDe access as well as the conventional coupled access. The results show that DUDe outperforms the coupled access scheme in terms of coverage and throughput. The user-clustering is also shown to benefit the coverage and throughput performance relative to the case of HPPP distributed users. The derived results are validated by Monte Carlo simulations.
机译:假设用户在上行链路和下行链路中与相同的基站连接,通常分析异构蜂窝网络(HCNS)的性能。然而,最近的研究表明,下行链路上行链路解耦(DUDE)可以相对于传统耦合访问提供网络性能增益。许多作者已经评估了HCN性能,同时假设网络用户根据同质泊松点处理(HPPP)分发。但是,当用户在城市热点等城市热点群集时,HPPP无法准确地模拟上行链路干扰,例如商场和体育场。这项工作调查了具有由Mattn Cluster过程建模的用户群集的HCN的Dude访问。我们推出了覆盖概率和平均吞吐量的分析表达式,用于DUDE访问以及传统的耦合访问。结果表明,Dude在覆盖和吞吐量方面占据了耦合的访问方案。还显示用户群集,以使覆盖率和吞吐量性能有益于HPPP分布式用户的情况。通过Monte Carlo仿真验证了导出的结果。

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