Distributed Algorithm for Constructing Efficient Tree Topology for Message Dissemination in Vehicular Networks

S. Kamakshi, S. Natarajan
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引用次数: 2

Abstract

Vehicular ad hoc network is an ad hoc network constituted among moving vehicles that have wireless dedicated short range communication (DSRC) devices in order to provide ubiquitous connectivity even if the road-side infrastructure is unavailable. Message dissemination in vehicular ad hoc networks is necessary for exchanging information about prevailing traffic information, so that the vehicles can take alternate routes to avoid traffic jam. A major challenge in broadcast protocols is that they result in flooding of messages that reduce the speed of dissemination due to collision. Dissemination of messages using tree topology reduces the number of rebroadcasts. Dynamicity Aware Graph Relabeling System model provides a framework to construct spanning tree in mobile wireless network. In this paper, we propose a new distributed algorithm for constructing an arbitrary spanning tree based on Dynamicity Aware Graph Relabeling System model, which develops a maximum leaf spanning tree in order to reduce the number of rebroadcasts and dissemination time. Our simulation results prove that the number of vehicles rebroadcasting the message is curtailed to 15% and the dissemination time required to achieve 100% reachability is curtailed by 10% under average vehicle density.
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构建高效树状拓扑的分布式算法在车载网络中的消息传播
车辆自组织网络是在具有无线专用短距离通信(DSRC)设备的移动车辆之间建立的自组织网络,目的是在道路侧基础设施不可用的情况下提供无处不在的连接。车辆自组织网络中的消息发布是交换当前交通信息的必要条件,从而使车辆能够选择备选路线以避免交通堵塞。广播协议的一个主要挑战是它们会导致消息泛滥,由于碰撞而降低传播速度。使用树状拓扑的消息传播减少了重广播的次数。动态感知图重标注系统模型为移动无线网络中生成树的构建提供了一个框架。本文提出了一种基于动态感知图重标注系统模型构建任意生成树的分布式算法,该算法通过构造最大叶生成树来减少重发次数和传播时间。我们的仿真结果证明,在平均车辆密度下,转播消息的车辆数量减少到15%,达到100%可达性所需的传播时间减少了10%。
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