As the superior improvement on wireless network coverage, spectrum efficiency and energy efficiency, Intelligent reflecting surface (IRS) has received more and more attention. In this work, we consider a large-scale IRS-assisted heterogeneous cellular network (HCN) consisting of $K$ ($K \geq 2$) tiers of base stations (BSs) and one tier of passive IRSs. With tools from stochastic geometry, we analyze the coverage probability and network spatial throughput of the downlink IRS-assisted $K$-tier HCN. Compared with the conventional HCN, we observe the significant gain achieved by IRSs in coverage probability and network spatial throughput. The proposed analytical framework can be used to understand the limit of gain achieved by IRSs in HCN.
翻译:作为无线网络覆盖面、频谱效率和能源效率方面的较高改进,智能反射表面(IRS)受到越来越多的关注,在这项工作中,我们认为一个大型IRS协助的多式蜂窝网络(HCN)由基站一级和一级被动IRS组成,由Stochatic几何工具组成,我们分析了IRS协助的下行连线IRS的覆盖概率和网络空间吞吐量,与传统的HCN相比,我们注意到IRS在覆盖概率和网络空间吞吐量方面所取得的巨大收益,拟议的分析框架可用于了解IRS在HCN中实现收益的限度。