On the Evaluation of Shortest Journeys in Dynamic Networks

Afonso Ferreira, A. Goldman, Julian Monteiro
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引用次数: 24

Abstract

The assessment of routing protocols for wireless networks is a difficult task, because of the networks' highly dynamic behavior and the absence of benchmarks. However, some of these networks, such as intermittent wireless sensors networks, periodic or cyclic networks, and low earth orbit (LEO) satellites systems, have more predictable dynamics, as the temporal variations in the network topology are somehow deterministic, which may make them easier to study. The graph theoretic model - the evolving graphs - was proposed to help capture the dynamic behavior of these networks, in view of the construction of least cost routing and other algorithms. Our recent experiments showed that evolving graphs have all the potentials to be an effective and powerful tool in the development of routing protocols for dynamic networks. In this paper, we evaluated the shortest journey evolving graph algorithm when used in a routing protocol for MANETs. We use the NS2 network simulator to compare this first implementation to the four well known protocols, namely AODV, DSR, DSDV, and OLSR. In this paper we present simulation results on the energy consumption of the nodes. We also included other EG protocol, namely EGForemost, in the experiments.
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动态网络中最短行程的评价
无线网络路由协议的评估是一项艰巨的任务,因为网络的高度动态行为和缺乏基准。然而,其中一些网络,如间歇性无线传感器网络、周期或循环网络和低地球轨道(LEO)卫星系统,具有更可预测的动态,因为网络拓扑结构的时间变化在某种程度上是确定的,这可能使它们更容易研究。图论模型-演化图-被提出来帮助捕捉这些网络的动态行为,考虑到最小代价路由和其他算法的构造。我们最近的实验表明,进化图具有成为动态网络路由协议开发中有效而强大的工具的所有潜力。在本文中,我们评估了最短行程进化图算法在用于manet路由协议时的性能。我们使用NS2网络模拟器将第一个实现与四种众所周知的协议,即AODV, DSR, DSDV和OLSR进行比较。本文给出了节点能耗的仿真结果。我们还在实验中加入了其他EG协议,即eg最重要协议。
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