Link Reliability Based Greedy Perimeter Stateless Routing for Vehicular Ad Hoc Networks

Siddharth Shelly, A. Babu
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引用次数: 39

Abstract

We propose an enhancement for the well-known greedy perimeter stateless routing (GPSR) protocol for vehicular ad hoc networks (VANETs), which exploits information about link reliability when one-hop vehicles are chosen for forwarding a data packet. In the proposed modified routing scheme, a tagged vehicle will select its one-hop forwarding vehicle based on reliability of the corresponding communication link. We define link reliability as the probability that a direct link among a pair of neighbour vehicles will remain alive for a finite time interval. We present a model for computing link reliability and use this model for the design of reliability based GPSR. The proposed protocol ensures that links with reliability factor greater than a given threshold alone are selected, when constructing a route from source to destination. The modified routing scheme shows significant improvement over the conventional GPSR protocol in terms of packet delivery ratio and throughput. We provide simulation results to justify the claim.
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基于链路可靠性的车辆自组网贪婪周界无状态路由
我们提出了一种针对车辆自组织网络(vanet)的众所周知的贪婪周边无状态路由(GPSR)协议的增强,该协议利用了当选择一跳车辆转发数据包时有关链路可靠性的信息。在改进的路由方案中,有标签的车辆将根据相应通信链路的可靠性选择其一跳转发车辆。我们将链路可靠性定义为一对相邻车辆之间的直接链路在有限时间间隔内保持存活的概率。提出了链路可靠性计算模型,并将该模型用于基于可靠性的GPSR的设计。该协议保证在构建从源到目的的路由时,只选择可靠性系数大于给定阈值的链路。与传统的GPSR协议相比,改进后的路由方案在分组传输率和吞吐量方面都有显著提高。我们提供了仿真结果来证明这一说法。
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