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A New Clustered HetNet Model to Accurately Characterize User-Centric Small Cell Deployments

机译:一种新的集群HetNet模型,可准确表征以用户为中心的小型小区部署

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This paper develops a comprehensive framework for the performance analysis of user-centric capacity-driven small cell deployments, where small cell BSs (SBSs) are deployed at the places of high user density, i.e., user hotspots. In order to incorporate the correlation between user and SBS locations, we model the geographical centers of user hotspots as a homogeneous Poisson point process (PPP) around which users and SBSs are clustered following two independent general distributions. The macrocell base station (BS) locations are modeled by an independent PPP. A key intermediate step of our analysis is the derivation of a new set of distance distributions, which enable the exact characterization of coverage probability and throughput. For numerical evaluation, we specialized the setup to the case where users and SBSs are clustered with two independent normal distributions. Our analysis demonstrates that as the number of SBSs reusing the same resource block increases (higher frequency reuse), coverage probability decreases whereas throughput increases. Thus the same resource block can be aggressively reused by more SBSs as long as the coverage probability remains acceptable.
机译:本文开发了一个全面的框架,用于用户中心的能力驱动的小型电池部署的性能分析,其中小单元BS(SBS)部署在高用户密度的位置,即用户热点。为了纳入用户和SBS位置之间的相关性,我们将用户热点的地理中心模拟为围绕其两个独立的一般分布组聚集的同质泊松点处理(PPP)。 Macrocell基站(BS)位置由独立的PPP建模。我们分析的一个关键中间步骤是推出一组新的距离分布,其能够精确地表征覆盖概率和吞吐量。对于数值评估,我们将设置为用户和SBS的群体与两个独立的正常分布进行聚类。我们的分析表明,随着重用相同资源块的SBS的数量增加(较高的频率重用),覆盖概率会降低,而吞吐量增加。因此,只要覆盖概率仍然可接受,就可以通过更多SBS激进地重复使用相同的资源块。

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