多通道雾式无线接入网络的随机几何模型

Mostafa Emara, Hesham Elsawy, Sameh Sorour, S. Al-Ghadhban, Mohamed-Slim Alouini, T. Al-Naffouri
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引用次数: 3

摘要

基于缓存的基站(BS)致密化,被称为雾无线接入网络(F-RAN),预计将成为5G蜂窝网络的关键组成部分。F-RAN允许在网络边缘(即BS缓存)存储流行文件,从而增强本地通信并缓解核心/回程网络的交通拥堵。命中概率是指从网络边缘成功传输流行文件请求的概率,是F-RAN的基本关键性能指标(KPI)。本文建立了一个基于随机几何的调度感知数学框架,以表征多信道环境下F-RAN的命中概率。为此,我们评估和比较了两种缓存分发方案的性能,即统一缓存和Zipf缓存。数值结果表明,常用的单信道环境导致对F-RAN命中概率的悲观估计。此外,数值结果表明了Zipf缓存方案的优越性,并量化了在通道数量和缓存大小方面的命中概率增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stochastic geometry model for multi-channel fog radio access networks
Cache-enabled base station (BS) densification, denoted as a fog radio access network (F-RAN), is foreseen as a key component of 5G cellular networks. F-RAN enables storing popular files at the network edge (i.e., BS caches), which empowers local communication and alleviates traffic congestions at the core/backhaul network. The hitting probability, which is the probability of successfully transmitting popular files request from the network edge, is a fundamental key performance indicator (KPI) for F-RAN. This paper develops a scheduling aware mathematical framework, based on stochastic geometry, to characterize the hitting probability of F-RAN in a multi-channel environment. To this end, we assess and compare the performance of two caching distribution schemes, namely, uniform caching and Zipf caching. The numerical results show that the commonly used single channel environment leads to pessimistic assessment for the hitting probability of F-RAN. Furthermore, the numerical results manifest the superiority of the Zipf caching scheme and quantify the hitting probability gains in terms of the number of channels and cache size.
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