实测IEEE 802.11p基础设施到车辆链路的平均下行性能

A. Paier, R. Tresch, A. Alonso, D. Smely, P. Meckel, Yi Zhou, N. Czink
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引用次数: 85

摘要

为了启动智能交通系统(ITS),有必要对其性能有详细的了解。IEEE 802.11p标准草案是物理和介质访问控制层(PHY/MAC)标准的扩展,用于车载通信中的无线接入到IEEE 802.11。为了评估其性能,我们在高速公路上使用IEEE 802.11p原型进行了基础设施对车辆的试验。本文给出了PHY平均下游性能的评价结果。主要由卡车引起的阴影效应导致链路质量的性能波动很大,特别是对于长数据包长度和高车速的设置。当帧成功率持续大于0.25时,最大可达距离约为700m。当车辆通过路边装置行驶时,可以传输的最大数据量以6和9Mbit/s的低数据速率实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Average Downstream Performance of Measured IEEE 802.11p Infrastructure-to-Vehicle Links
For the launch of intelligent transport systems (ITS), it is necessary to have detailed understanding of their performance. The draft standard IEEE 802.11p is the physical and medium access control layer (PHY/MAC) standard extension for wireless access in vehicular communications to IEEE 802.11. In order to evaluate its performance, we carried out an infrastructure-to-vehicle trial on a highway using an IEEE 802.11p prototype. This paper presents evaluation results of the average downstream performance of the PHY. Shadowing effects mainly caused by trucks lead to a strongly fluctuating performance of the link quality, especially for settings with long packet lengths and high vehicle speeds. The maximum achievable range, where the frame-success-ratio is continuously larger than 0.25, is about 700m. The maximum data volume that can be transmitted when a vehicle drives by a roadside unit is achieved at low data rates of 6 and 9Mbit/s.
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