A-LMST: An Adaptive LMST Local Topology Control Algorithm for Mobile Ad Hoc Networks

Luciana B. Abiuzi, Cecília A. C. César, C. Ribeiro
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引用次数: 4

Abstract

The pattern of mobile nodes movement and node removals or additions cause frequent and unpredictable changes in the topology of mobile ad hoc networks. Network performance can thus vary significantly under different mobility models, as well as from the variation in parameters of a given mobility model, such as node movement speed and number of nodes in the network. Hence, the efficiency of a network depends not only on its control protocols, but also on its topology. In this paper, we first compare the impact that mobility parameter variations produces on typical network metrics - routing packets generated, routing overhead and route discovery average delay - in networks with and without topology control. Results from experiments in a wireless network simulator show that, in networks with topology control using 2 or 3 hops for route discovery depending on the node degree, the number of routing packets decreases, therefore improving the operation and efficiency of the network. Based on these results, a local adaptive self-configuration LMST topology control was then proposed and analysed, producing better results as the network size increases.
A-LMST:一种移动Ad Hoc网络自适应LMST局部拓扑控制算法
移动节点移动和节点移除或添加的模式导致移动自组织网络拓扑结构频繁且不可预测的变化。因此,在不同的移动性模型下,以及给定移动性模型的参数(如节点移动速度和网络中的节点数量)的变化,网络性能可能会有很大差异。因此,网络的效率不仅取决于其控制协议,还取决于其拓扑结构。在本文中,我们首先比较了移动性参数变化在有和没有拓扑控制的网络中对典型网络指标(生成的路由数据包、路由开销和路由发现平均延迟)的影响。在无线网络模拟器上的实验结果表明,在根据节点度采用2或3跳拓扑控制进行路由发现的网络中,路由数据包的数量减少,从而提高了网络的运行效率。在此基础上,提出并分析了一种局部自适应自配置LMST拓扑控制方法,随着网络规模的增大,控制效果更好。
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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