Performance evaluation of IEEE 802.11p for vehicular traffic congestion control

A. Murali, K. Bhanupriya, S. Smitha, G. N. Kumar
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引用次数: 21

Abstract

Vehicular traffic congestion in metropolitan cities during disaster is a challenge which presents dire consequences for transporting VIPs, life saving drugs, patients, accident victims in need of immediate medical assistance etc. With better navigation system and real-time traffic congestion updates, the vehicles can overcome delays. Vehicular Ad Hoc Network (VANETs), transmits the real time congestion information to the vehicles from a centralized database to avoid unexpected congestion and follow the shortest path to the destination. In this paper a proposed prototype which can be modified to work for the requirement with different models, such as general traffic prediction and re-routing during emergencies in case of fire, accidents etc. along the route is worked out. IEEE 802.11p which has been introduced exclusively for vehicular environments has been implemented at the Physical and Medium Access Control(MAC) layers of the WAVE protocol stack which was considered for a metropolitan city over an unpredictable high density of vehicles. Evaluation of the performance of IEEE 802.11p, Wireless Access for Vehicular Environment (WAVE) communication standard against IEEE802.11a for the vehicular environment for multiple scenarios has been simulated and the results are encouraging.
IEEE 802.11p对车辆交通拥堵控制的性能评价
灾害期间大城市的车辆交通拥堵是一个挑战,它对运送贵宾、救生药品、病人、需要立即医疗援助的事故受害者等带来了可怕的后果。有了更好的导航系统和实时交通拥堵更新,这些车辆可以克服延误。车辆自组织网络(Vehicular Ad Hoc Network, VANETs)从一个集中的数据库向车辆传输实时的拥堵信息,以避免意外的拥堵,并沿着最短的路径到达目的地。本文提出了一种可修改的原型,该原型可适应不同模型的要求,如一般交通预测和沿线发生火灾、事故等突发事件时的改道。专为车辆环境引入的IEEE 802.11p已在WAVE协议栈的物理和介质访问控制(MAC)层实现,该协议被认为适用于不可预测的高密度车辆的大都市。对IEEE802.11a和ieee802.11 p车载环境无线接入(WAVE)通信标准在多种场景下的性能进行了仿真评估,结果令人鼓舞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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