VANET路由协议的QoS评价

B. Yelure, S. Sonavane
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引用次数: 7

摘要

在当今智能革命时代,智能交通系统(ITS)是一个至关重要的流行语。车辆特设网络(VANET)技术帮助智能交通系统提高效率,并为车辆和驾驶员提供道路安全服务。车辆在特殊的自组织网络中充当节点。VANET中的通信是通过IEEE802.11p即专用短距离通信(DSRC)和无线接入车载环境(WAVE)完成的。VANET的通信方式分为车内通信(V2V)和车对路通信(V2R)。由于拓扑结构的动态变化、车辆运动模式的有限性、链路的不稳定性以及复杂的城市环境,路由问题成为VANET环境中的首要问题。在真实环境中实现VANET环境是一项艰巨的任务。本文的目的是模拟拓扑路由协议来评估QoS。模拟使用曼哈顿电网的机动性来反映真实的车辆环境。仿真是在不同的试验环境下,根据车辆密度和行驶速度的变化进行的。这两个因素对QoS参数的影响通过分组投递率、吞吐量、平均E2ED和归一化路由开销来评估。AODV产生更好的PDR,吞吐量和更少的NRL。与其他协议相比,OLSR产生的平均E2ED较少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
QoS Evaluation of VANET Routing Protocol
In today's smart revolutionary era, Intelligent Transportation System (ITS) is a buzzword that plays a vital role. Vehicular ad-hoc network (VANET) techniques help ITS for improving efficiency as well as road safety services to vehicles and drivers. The vehicle acts as a node in the special ad-hoc network. Communication in the VANET is accomplished through IEEE802.11p i.e. Dedicated Short Range Communication (DSRC) and Wireless Access Vehicular Environment (WAVE). The ways of communication in the VANET are within vehicles (V2V) and vehicle-to-road (V2R). Routing is a foremost issue in the VANET environment due to the dynamic variation of topology, the restricted movement pattern of the vehicle, unstable links and complex city environments. Implementation of the VANET environment is a difficult task in a real environment. The objective of the paper is to simulate topological routing protocols to evaluate QoS. The simulation uses ManhattanGrid mobility to reflect the realistic vehicular environment. The simulation is conducted in various test environments with the variation in the vehicular density and speed of the vehicle. The influence of both factors on the QoS parameter is evaluated with Packet Delivery Ratio, Throughput, Avg. E2ED and Normalized Routing Overhead. AODV produces better PDR, Throughput and less NRL. OLSR produces less Avg. E2ED with respect to other protocols.
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