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Coverage in Downlink Heterogeneous mmWave Cellular Networks With User-Centric Small Cell Deployment

机译:具有以用户为中心的小型小区部署的下行链路异构毫米波蜂窝网络的覆盖范围

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A K-tier heterogeneous downlink millimeter wave (mmWave) cellular network with user-centric small cell deployments is studied in this paper. In particular, we consider a heterogeneous network model with user equipments (UEs) being distributed according to a Poisson cluster process (PCP). Distinguishing features of mmWave communications including directional beamforming and a sophisticated path loss model incorporating both line-of-sight and non-line-of-sight transmissions, are taken into account. Initially, we determine general expressions for the association probabilities of different tier BSs. Using tools from stochastic geometry, we then characterize the Laplace transform of the interference and derive a general expression for the signal-to-interference-plus-noise ratio coverage probability. While these expressions are applicable to any PCP, we later specialize the results to two popular PCPs, namely, first, Thomas cluster process, where the UEs are clustered around the base stations (BSs) according to a Gaussian distribution, and second, Matern cluster process, where the UEs are scattered according to a uniform distribution. Subsequently, upper and lower bounds for the coverage probability are provided. Special cases are also addressed, providing the insight that when the cluster size grows without bound, our PCP-based model specializes to a Poisson point process-based model. Area spectral efficiency is investigated as well. Moreover, we have discussed extensions to cases in which more practical antenna gain patterns are taken into account and also the shadowing is considered. Via numerical and simulation results, we explore the effects of the beamwidth of the main lobe, the main lobe directivity gain, the biasing factor and the transmit power of the small-cell BSs to get insight on the performance in practical scenarios. Performance in dense networks is also analyzed numerically.
机译:本文研究了以用户为中心的小型小区部署的K层异构下行毫米波(mmWave)蜂窝网络。特别地,我们考虑一种异构网络模型,其中根据Poisson群集过程(PCP)分布用户设备(UE)。考虑了mmWave通信的区别特征,包括定向波束成形和结合了视距传输和非视距传输的复杂路径损耗模型。最初,我们确定不同层BS的关联概率的一般表达式。然后,使用来自随机几何的工具,对干扰的Laplace变换进行特征化,并得出信号与干扰加噪声比覆盖率的一般表达式。尽管这些表达式适用于任何PCP,但我们随后将结果专门化为两个流行的PCP,即,第一,Thomas群集过程,其中,UE根据高斯分布在基站(BS)周围聚集,第二,Matern群集处理过程中,根据均匀分布分散UE。随后,提供覆盖概率的上限和下限。还解决了一些特殊情况,提供的见解是,当群集大小无限增长时,我们基于PCP的模型将专门研究基于Poisson点过程的模型。还研究了区域光谱效率。而且,我们已经讨论了扩展到其中考虑了更实际的天线增益模式并且还考虑了阴影的情况。通过数值和仿真结果,我们探索了小蜂窝基站的主瓣波束宽度,主瓣方向性增益,偏置因子和发射功率的影响,以了解实际情况下的性能。还对密集网络中的性能进行了数值分析。

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