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An approach for location area planning in a personal communication services network (PCSN)

机译:个人通信服务网络(PCSN)中的位置区域规划方法

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This paper deals with an approach for planning location areas (LAs) in a personal communication services network (PCSN) to be overlaid on an existing wired network. Given the average speed of mobile terminals, the number of mobile switching centers (MSCs), their locations, call handling capacity of each MSC, handoff cost between adjacent cells and call arrival rate, an important consideration in a PCSN is to identify the cells in every LA to be connected to the corresponding MSC in a cost effective manner. In this work, while planning a location area, we present a two-step approach, namely optimization of total system recurring cost (subproblem I) and optimization of hybrid cost (subproblem II). The planning first determines the optimum number of cells in an LA from subproblem I. Then, it finds out the exact LAs by assigning cells to the switches, while optimizing the hybrid cost which comprises the handoff cost and the cable cost, in subproblem II. This divide-and-conquer strategy provides a practical way for designing LAs. As our approach toward LA planning takes into accounts both cost and network planning factors, this unique combination will be of great interest to PCSN designers. It develops an optimum network planning method for a wide range of call-to-mobility ratios that minimizes the total system recurring cost while still ensuring a good system performance. Our study shows that acceptable results are achievable with a reasonable computational effort, which supports the engineered planning of a PCSN.
机译:本文讨论一种用于规划要覆盖在现有有线网络上的个人通信服务网络(PCSN)中的位置区域(LA)的方法。给定移动终端的平均速度,移动交换中心(MSC)的数量,它们的位置,每个MSC的呼叫处理能力,相邻小区之间的切换成本和呼叫到达率,在PCSN中的一个重要考虑因素是识别小区中的小区。每个LA以经济有效的方式连接到相应的MSC。在这项工作中,在规划位置区域时,我们提出了两步方法,即优化总系统重复成本(子问题I)和优化混合成本(子问题II)。该计划首先根据子问题I确定一个LA中的最佳信元数。然后,通过在子问题II中优化分配包括切换成本和电缆成本在内的混合成本,并为交换机分配信元,从而找到确切的LA。这种分而治之的策略为设计洛杉矶提供了一种实用的方法。由于我们的LA规划方法同时考虑了成本和网络规划因素,因此PCSN设计人员将非常感兴趣这种独特的组合。它为各种呼叫/移动比率开发了一种最佳的网络规划方法,该方法可以最大程度地降低总系统重复成本,同时仍可确保良好的系统性能。我们的研究表明,通过合理的计算工作即可获得可接受的结果,这为PCSN的设计规划提供了支持。

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