A non-linear binary integer programming model for location area partitioning in cellular radio networks

Daniel Chien Ming Kuan, B. Yeo
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引用次数: 3

Abstract

The scarce radio resources available to any cellular radio network have to be shared between its revenue-generating voice- and data-carrying services, and non-revenue-generating management services. One of these management services is location management, crucial for the network to keep track of the location of its subscribers and to connect their incoming calls. Location management consists of the two activities, paging and location updating, both of which are structured around a subdivision of the network service area called the location area (LA). The ways in which the service area is partitioned therefore has a direct impact on the amount of radio bandwidth that has to be spent on location management. However, paging and location updating share an antagonistic relationship, and finding the optimal LA partitioning that strikes a balance between the two is a challenging design problem. In this paper, the problem of finding the optimal LA partitioning of a cellular radio network service area in order to minimise the total location management signalling cost is addressed. The choice of the decision variables used in the mathematical programming model results in an objective function that is conceptually easy to understand and a solution method that is simple and straightforward.
蜂窝无线网络中位置区域划分的非线性二进制整数规划模型
任何蜂窝无线网络都必须在产生收入的话音和数据传输业务以及不产生收入的管理业务之间共享稀缺的无线电资源。其中一项管理服务是位置管理,对于网络跟踪其用户的位置并连接他们的传入呼叫至关重要。位置管理由分页和位置更新这两个活动组成,这两个活动都是围绕称为位置区域(Location area, LA)的网络服务区域的一个细分而构建的。因此,服务区域划分的方式对必须用于位置管理的无线电带宽数量有直接影响。然而,分页和位置更新共享一种对立关系,并且找到在两者之间取得平衡的最佳LA分区是一个具有挑战性的设计问题。本文讨论了蜂窝无线网络服务区的最佳LA划分问题,以使总位置管理信令成本最小化。数学规划模型中使用的决策变量的选择产生了一个在概念上易于理解的目标函数和一个简单直接的求解方法。
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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