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A Double Herd Krill Based Algorithm for Location Area Optimization in Mobile Wireless Cellular Network

机译:基于双群磷虾的移动无线蜂窝网络定位区域优化算法

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摘要

In wireless communication systems, mobility tracking deals with determining a mobile subscriber (MS) covering the area serviced by the wireless network. Tracking a mobile subscriber is governed by the two fundamental components called location updating (LU) and paging. This paper presents a novel hybrid method using a krill herd algorithm designed to optimize the location area (LA) within available spectrum such that total network cost, comprising location update (LU) cost and cost for paging, is minimized without compromise. Based on various mobility patterns of users and network architecture, the design of the LR area is formulated as a combinatorial optimization problem. Numerical results indicate that the proposed model provides a more accurate update boundary in real environment than that derived from a hexagonal cell configuration with a random walk movement pattern. The proposed model allows the network to maintain a better balance between the processing incurred due to location update and the radio bandwidth utilized for paging between call arrivals.
机译:在无线通信系统中,移动性跟踪处理确定覆盖无线网络服务区域的移动用户(MS)。跟踪移动订户受称为位置更新(LU)和寻呼的两个基本组件的控制。本文提出了一种使用磷虾群算法的新型混合方法,该算法旨在优化可用频谱内的位置区域(LA),从而使包括位置更新(LU)成本和寻呼成本在内的总网络成本降至最低,而不会受到影响。根据用户的各种移动模式和网络体系结构,将LR区域的设计表述为组合优化问题。数值结果表明,与从具有随机行走运动模式的六边形单元配置派生的模型相比,所提出的模型在实际环境中提供了更准确的更新边界。提出的模型允许网络在因位置更新而引起的处理与呼叫到达之间用于寻呼的无线电带宽之间保持更好的平衡。

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