A route discovery optimization scheme using GPS system

A. Boukerche, V. Sheetal, Myongsu Choe
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引用次数: 13

Abstract

Ad hoc networks are useful for providing communication support where no fixed infrastructure exists or the deployment of a fixed infrastructure is not economically profitable, and movement of communicating parties is allowed. Therefore, such networks are designed to operate in widely varying environments, from military networks to low-power sensor networks and other embedded systems. Frequent topology changes caused by node mobility make routing in ad hoc wireless networks a challenging problem. In this paper, we propose an optimization technique, which we refer to as GDSR, a reactive protocol that makes use of DSR scheme and the Global positioning system (GPS). As opposed to the DSR protocol, our GDSR scheme consists of propagating the route request messages only to the nodes that are further away from the query source. We discuss the algorithm, its implementation and present an extensive simulation and experimental results to study its performance. We also present a comparative study of GDSR protocol with the existing DSR protocol. Our results clearly indicate that the GDSR protocol outperforms the DSR protocol by significantly decreasing the number of route query packets thereby increasing the efficiency of the network load. Further more, we show that a careful GPS screening angle is an important factor in the success of GDSR ad hoc routing protocol.
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一种基于GPS系统的路由发现优化方案
在不存在固定基础设施或部署固定基础设施在经济上无利可图且允许通信各方移动的情况下,自组织网络可用于提供通信支持。因此,这种网络被设计为在广泛不同的环境中运行,从军事网络到低功耗传感器网络和其他嵌入式系统。由节点移动引起的频繁拓扑变化使得自组织无线网络中的路由成为一个具有挑战性的问题。在本文中,我们提出了一种优化技术,我们称之为GDSR,一种利用DSR方案和全球定位系统(GPS)的响应协议。与DSR协议相反,我们的GDSR方案只将路由请求消息传播到离查询源较远的节点。我们讨论了该算法及其实现,并给出了广泛的仿真和实验结果来研究其性能。我们还对GDSR协议与现有的DSR协议进行了比较研究。我们的结果清楚地表明,GDSR协议优于DSR协议,因为它显著减少了路由查询数据包的数量,从而提高了网络负载的效率。此外,我们还表明,谨慎的GPS筛选角度是GDSR自组织路由协议成功的重要因素。
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