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Downlink and Uplink Decoupling: A disruptive architectural design for 5G networks

机译:下行和上行解耦:5G网络的破坏性架构设计

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Cell association in cellular networks has traditionally been based on the downlink received signal power only, despite the fact that uplink and downlink transmission powers and interference levels differed significantly. This approach was adequate in homogeneous networks with macro base stations all having similar transmission power levels. However, with the growth of heterogeneous networks where there is a big disparity in the transmit power of the different base station types, this approach is highly inefficient. In this paper, we study the notion of Downlink and Uplink Decoupling (DUDe) where the downlink cell association is based on the downlink received power while the uplink is based on the pathloss. We present the motivation and assess the gains of this 5G design approach with simulations that are based on Vodafone's LTE field trial network in a dense urban area, employing a high resolution ray-tracing pathloss prediction and realistic traffic maps based on live network measurements.
机译:传统上,尽管上行链路和下行链路的传输功率以及干扰水平存在显着差异,但是蜂窝网络中的小区关联传统上仅基于下行链路的接收信号功率。这种方法在具有均具有相似发射功率电平的宏基站的同构网络中是足够的。但是,随着异构网络的发展,其中不同基站类型的发射功率之间存在很大差异,这种方法的效率非常低。在本文中,我们研究了下行链路和上行链路解耦(DUDe)的概念,其中下行链路小区关联基于下行链路接收功率,而上行链路则基于路径损耗。我们通过基于沃达丰(Vodafone)LTE现场试验网络的模拟在稠密的城市中提出这种动机并评估这种5G设计方法的收益,该模拟采用高分辨率的光线跟踪路径损耗预测和基于实时网络测量的真实交通图。

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