802.11p与基于移动wimax的V2I通信网络的比较研究

Ikbal Chammakhi Msadaa, Pasquale Cataldi, F. Filali
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引用次数: 76

摘要

智能交通系统(ITS)自80年代以来一直处于发展阶段,作为解决许多现代生活交通问题的全球战略的一部分。这些系统使人们能够以安全、高效、舒适的方式到达目的地。为了实现这一目标,已经为下一代ITS提出了几种无线电接入技术(RAT),如UMTS、WiFi、WiMAX和5.9 GHz。然而,这些技术在车辆中的共存提出了选择最合适的RAT的挑战。为了解决这一问题并确定通信技术选择的最佳规则,必须对网络性能进行比较。在本文中,我们比较了两种最有前途的基于基础设施的无线技术:移动WiMAX(基于IEEE 802.16e标准)和基于即将到来的IEEE 802.11p标准的5.9 GHz技术。通过模拟,我们研究了这两种技术作为车辆到基础设施(V2I)通信媒介的潜力和局限性。针对不同的车速、交通数据速率和网络部署,评估了这两个系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Comparative Study between 802.11p and Mobile WiMAX-based V2I Communication Networks
Intelligent Transportation Systems (ITS) have been under development since the 80’s as part of a global strategy for solving many of our modern life transportation problems. These systems enable people to reach their destinations in a safe, efficient, and comfortable way. In order to reach that goal, several radio access technologies (RAT) such as UMTS, WiFi, WiMAX and 5.9 GHz have been proposed for next generation ITS. Yet, the coexistence of these technologies in the vehicles raises the challenge of choosing the most appropriate RAT. In order to address this problem and define optimal rules for the communication technology selection, comparisons on the network performance have to be done. In this paper, we compare two of the most promising infrastructure-based wireless technologies: mobile WiMAX (based on IEEE 802.16e standard) and the 5.9 GHz technology based on the upcoming IEEE 802.11p standard. We investigate, through simulation, the potential and limitations of both technologies as a communication media for vehicle-to-infrastructure (V2I) communications. The performance of the two systems is evaluated for different vehicle speeds, traffic data rates, and network deployments.
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