Stochastic Geometry Analysis for RIS-Assisted Large-Scale Cellular Networks

Tianxiong Wang, Gaojie Chen, Mihai-Alin Badiu, J. Coon
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Abstract

In this paper, we analyze the coverage probability of a reconfigurable intelligent surface (RIS) aided cellular network with the theory of stochastic geometry. A Poisson cluster process (PCP) is applied to model the positions of transmitters (TXs) and RISs, capturing their spatial correlations. Considering the general Nakagami-m fading channel model, we derive the approximate distributions of the composite channel gains with RIS-assisted transmission, representing the desired signal channel and the interference channel, respectively. The coverage probability of the typical user is then obtained. The derived coverage probability is in a closed form, which can be evaluated efficiently. Simulation results are presented to show that the presented analysis is effective, demonstrate the significant performance gains brought by the passive beamforming of a RIS with a large number of elements, and show the impact of TX density on the performance of the proposed system.
ris辅助大规模蜂窝网络的随机几何分析
本文利用随机几何理论分析了可重构智能表面辅助蜂窝网络的覆盖概率。应用泊松聚类过程(PCP)对发射机(TXs)和RISs的位置进行建模,捕捉它们的空间相关性。考虑到一般的Nakagami-m衰落信道模型,我们推导了ris辅助传输下的复合信道增益的近似分布,分别表示期望的信号信道和干扰信道。然后得到典型用户的覆盖概率。得到的覆盖概率为封闭形式,可以有效地进行评估。仿真结果表明了所提分析的有效性,展示了具有大量单元的RIS被动波束形成带来的显著性能提升,并展示了TX密度对所提系统性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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