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The impact of traffic patterns on the overhead of reactive routing protocols

机译:流量模式对反应式路由协议开销的影响

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This paper presents a mathematical and simulative framework for quantifying the overhead of reactive routing protocols, such as dynamic source routing and ad hoc on-demand distance vector, in wireless variable topology (ad hoc) networks. A model of the routing-layer traffic, in terms of the statistical description of the distance between a source and a destination, is presented. The model is used to study the effect of the traffic on the routing overhead. Two network models are analyzed; a Manhattan grid model for the case of regular node placement, and a Poisson model for the case of random node placement. We focus on situations where the nodes are stationary but unreliable. For each network model, expressions of various components of the routing overhead are derived as a function of the traffic pattern. Results are compared against ns-2 simulations, which corroborate the essential characteristics of the analytical results. One of the key insights that can be drawn from the mathematical results of this paper is that it is possible to design infinitely scalable reactive routing protocols for variable topology networks by judicious engineering of the traffic patterns to satisfy the conditions presented in this paper.
机译:本文提出了一种数学和模拟框架,用于量化无线可变拓扑(ad hoc)网络中的反应式路由协议的开销,例如动态源路由和ad hoc按需距离矢量。根据源与目的地之间的距离的统计描述,提出了路由层流量的模型。该模型用于研究流量对路由开销的影响。分析了两种网络模型;对于常规节点放置的情况是曼哈顿网格模型,对于随机节点放置的情况是泊松模型。我们关注节点固定但不可靠的情况。对于每种网络模型,路由开销的各个组成部分的表达式都是根据流量模式得出的。将结果与ns-2模拟进行比较,这证实了分析结果的基本特征。可以从本文的数学结果中得出的主要见解之一是,可以通过对流量模式进行明智的工程设计来满足本文中提出的条件,为可变拓扑网络设计无限扩展的反应式路由协议。

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