Core network function placement in mobile networks

Jad Oueis, Razvan Stanica, F. Valois, V. Conan, D. Lavaux
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引用次数: 3

Abstract

An isolated base station is a base station having no connection to a traditional core network. To provide services to users, an isolated base station is colocated with an entity providing the same functionalities as the traditional core network, referred to as Local EPC. In order to cover wider areas, several base stations are interconnected, forming a network that should be served by a single Local EPC. In this work, we tackle the Local EPC placement problem in the network, to determine with which of the base stations the Local EPC must be co-located. We propose a novel centrality metric, flow centrality, which measures the capacity of a node to receive the total amount of flows in the network. We show that co-locating the Local EPC with the base station having the maximum flow centrality maximizes the total amount of traffic the Local EPC can receive from all base stations, under certain capacity and load distribution constraints. We compare the flow centrality to other state of the art centrality metrics, and emphasize its advantages.
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核心网功能在移动网络中的布局
孤立基站是指与传统核心网络没有连接的基站。为了向用户提供服务,将一个孤立的基站与一个提供与传统核心网相同功能的实体(称为本地EPC)放在一起。为了覆盖更广泛的地区,几个基站相互连接,形成一个网络,应该由一个本地EPC提供服务。在这项工作中,我们解决了本地EPC在网络中的放置问题,以确定本地EPC必须与哪个基站共存。我们提出了一种新的中心性度量,即流量中心性,它衡量节点接收网络中总流量的能力。研究表明,在一定的容量和负载分配约束下,将本地EPC与流量中心性最大的基站同址可以使本地EPC从所有基站接收的流量总量最大化。我们将流中心性与其他最先进的中心性指标进行比较,并强调其优势。
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