以无线服务为例的道路安全个案研究

Piotr Lizakowski
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引用次数: 0

摘要

本文考虑在车载环境下组织无线接入。这样的环境通常会受到多普勒效应的影响,因此IEEE 802.11p标准有望确保为移动对象提供适当的服务质量。从理论上讲,IEEE 802.11p标准补偿了多普勒效应,但应该确定802.11p在微小的多普勒频移和物体以更高的速度移动时是否仍然有效。802.11p链路提供的数据速率是802.11a的两倍。因此,通过改变多普勒频移从0 Hz到100 Hz,在宽信噪比范围内对链路进行端到端模拟。模拟还涉及128位、512位和1024位分组传输的8种调制类型,以涵盖所有可能的研究案例。效率标准是数据包错误率,另外还要考虑数据速率。主要的模拟结果是802.11p链路仅在不高速的情况下有效。应该缩短报文长度,以抑制对象速度的影响。因此,为了在车载环境中实现高质量的无线接入,应该使用802.11p和802.11a链路的组合,其中相移键控对802.11a更有效,正交调幅对802.11p更有效。这里的权衡是数据速率与边际速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Road Safety on the Example of Wireless Services – Case Study
The paper considers organising wireless access in vehicular environments. Such environments are normally affected by Doppler effects, so the IEEE 802.11p standard is expected to ensure an appropriate quality of service for moving objects. Theoretically, the IEEE 802.11p standard compensates for Doppler effects, but it should be ascertained whether 802.11p is still efficient at tiny Doppler shifts and when an object moves at higher speeds. The 802.11p link provides a data rate which is twice as low for 802.11a. Thus, an end-to-end simulation is carried out for the links at wide ranges of signal-to-noise ratio by varying the Doppler shift from 0 Hz to 100 Hz. The simulation also involves 8 modulation types for 128-, 512-, and 1024-bit packet transmissions to cover all possible study cases. The efficiency criterion is the packet-error rate, to which the data rate is additionally considered. The main simulation result is that the 802.11p link is efficient only at not high speeds. The packet length should be shortened to suppress the influence of the object’s speed. Therefore, to enable high-quality wireless access in vehicular environments, a combination of the 802.11p and 802.11a links should be used, where phase shift keying is more effective for 802.11a and quadrature amplitude modulation is more effective for 802.11p. The trade-off herein is a data rate versus margin speed.
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