使用无线局域网进行车辆间通信

Yvonne Günter, H. P. Großmann
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引用次数: 33

摘要

近年来,欧洲道路上的车辆数量不断增加。更高的流量密度使得新的安全特性成为保证流量安全的关键。车际通信为该领域提供了许多可能性,如碰撞预警或分布在多辆车上的传感器融合。在车辆之间传输此类数据对联网技术有严格的要求。一方面,通信系统本身是由车辆构成的,并且是高度动态的,因此需要一种能够处理通信伙伴的移动性所造成的物理影响的技术。另一方面,应用程序本身可以有严格的限制,特别是在延迟方面。到目前为止,还没有专门针对车际通信的标准化技术,但由于其可用性,基于IEEE 802.11标准的无线局域网通常被视为一种可能的解决方案。在本文中,我们介绍了该技术在不同驾驶情况下的行为,重点讨论了物理层和介质访问层引起的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Usage of wireless LAN for inter-vehicle communication
In recent years the number of vehicles has been increasing constantly on European roads. This higher traffic density makes new security features a crucial point in order to keep safe traffic. Inter-vehicle communication offers a lot of possibilities in this field, like collision warning or sensor fusion with sensors distributed in several vehicles. Transmitting such data between vehicles has strict requirements for the networking technology. On the one hand the communication system itself, which is built of vehicles and is so highly dynamic, requires a technology capable of handling the physical effects caused by the mobility of the communication partners. On the other hand the applications themselves can have strict constraints, especially regarding latency. Up to now, there is no special technology standardised for inter-vehicle communication, but because of its availability the wireless LAN according to the standard IEEE 802.11 is often seen as a possible solution. In this paper we present the behaviour of this technology in different driving situations focusing on the effects caused by the physical layer and the medium access layer.
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