An analysis of backhaul costs of radio access networks using stochastic geometry

V. Suryaprakash, G. Fettweis
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引用次数: 14

Abstract

A flexible and effectual back-haul infrastructure is required for managing extremely dense future mobile networks proficiently, and economically. This paper aims to establish a framework which can estimate the cost of a network, and then use the framework to minimize the deployment cost of the network by optimizing the number of back-haul nodes required to help the base stations satisfy user demands. The two main contributions of this work are: the derivation of a framework that gives the cost of deploying a back-haul node in a 3-layer model which consists of users, base stations, and back-haul nodes; and the generalization of the framework to obtain the cost of deploying a node in a particular layer of interest in a k-layer model. The utility of this framework is illustrated for the 3-layer model by showing that there exist a range of back-haul node intensity values for which deployment costs can be minimized while satisfying users' rate requirements.
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基于随机几何的无线接入网回程成本分析
灵活有效的回程基础设施是高效、经济地管理极其密集的未来移动网络所必需的。本文旨在建立一个可以估算网络成本的框架,然后利用该框架通过优化所需的回程节点数量来最小化网络的部署成本,从而帮助基站满足用户需求。这项工作的两个主要贡献是:推导了一个框架,该框架给出了在由用户、基站和回程节点组成的三层模型中部署回程节点的成本;并对框架进行泛化,以获得在k层模型中感兴趣的特定层中部署节点的成本。通过显示存在一系列回程节点强度值,可以在满足用户速率要求的同时将部署成本最小化,从而说明该框架对三层模型的效用。
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