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On the performance analysis of downlink heterogeneous networks with dual connectivity

机译:具有双连通性的下行异构网络的性能分析

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By separately transmitting data and control signals from different tiers, dual connectivity (DC) delivers a potential solution to the handover and load balancing challenges brought by small cell deployment. In this paper, a tractable framework is developed for the downlink performance analysis of DC assisted heterogeneous cellular networks (HetNets). Based on a stochastic geometry model, accurate expressions of data-control joint coverage probability and average rate for a typical DC capable UE are derived and investigated under DC mode and single connectivity (SC) mode. It is observed that operating parameters like cell association bias and transmit power will change the optimum node density ratio to reach the maximum coverage probability and average rate, but they have little impact on the levels of maximum coverage and rate performance. Numerical results also reveal that better coverage and rate performance can be expected in scenarios with higher small cell path loss exponent.
机译:通过分别传输来自不同层的数据和控制信号,双连接(DC)可为小型小区部署带来的切换和负载平衡挑战提供潜在的解决方案。本文为直流辅助异构蜂窝网络(HetNets)的下行链路性能分析开发了一个易于处理的框架。基于随机几何模型,在DC模式和单连接性(SC)模式下,推导并研究了典型的具有DC能力的UE的数据控制联合覆盖概率和平均速率的准确表达式。已经观察到,诸如小区关联偏差和发射功率之类的操作参数将改变最佳节点密度比,以达到最大覆盖概率和平均速率,但是它们对最大覆盖范围和速率性能的影响很小。数值结果还表明,在具有较高小小区路径损耗指数的情况下,可以预期具有更好的覆盖范围和速率性能。

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