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Spectral Efficiency of Dynamic Coordinated Beamforming: A Stochastic Geometry Approach

机译:动态协调波束形成的频谱效率:一种随机几何方法

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摘要

This paper characterizes the performance of coordinated beamforming with dynamic clustering. A downlink model based on stochastic geometry is put forth to analyze the performance of such a base station (BS) coordination strategy. Analytical expressions for the complementary cumulative distribution function (CCDF) of the instantaneous signal-to-interference ratio (SIR) are derived in terms of relevant system parameters, chiefly the number of BSs forming the coordination clusters, the number of antennas per BS, and the pathloss exponent. Utilizing this CCDF, with pilot overheads further incorporated into the analysis, we formulate the optimization of the BS coordination clusters for a given fading coherence. Our results indicate that: 1) coordinated beamforming is most beneficial to users that are in the outer part of their cells yet in the inner part of their coordination cluster and that 2) the optimal cluster cardinality for the typical user is small and it scales with the fading coherence. Simulation results verify the exactness of the SIR distributions derived for stochastic geometries, which are further compared with the corresponding distributions for deterministic grid networks.
机译:本文通过动态聚类来表征协调波束形成的性能。提出了一种基于随机几何的下行链路模型来分析这种基站(BS)协调策略的性能。瞬时信噪比(SIR)的互补累积分布函数(CCDF)的解析表达式是根据相关系统参数得出的,主要是构成协调簇的BS数量,每个BS的天线数量以及路径损耗指数。利用此CCDF,并将导频开销进一步纳入分析,我们为给定的衰落相干性制定了BS协调簇的优化方案。我们的结果表明:1)协调波束成形对位于其小区外部但位于其协调集群内部的用户最有好处,并且2)典型用户的最佳集群基数很小,并且随逐渐消失的连贯性。仿真结果验证了为随机几何导出的SIR分布的准确性,并将其与确定性网格网络的相应分布进行了比较。

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