车载环境下雾对基于光学摄像机的VLC影响的实验研究

Elizabeth Eso, A. Burton, N. B. Hassan, M. M. Abadi, Zabih Ghassemlooy, S. Zvánovec
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引用次数: 24

摘要

发光二极管在汽车头尾灯中的广泛应用以及仪表盘摄像头的使用为基于光学摄像头的可见光通信技术在智能交通系统中的应用提供了广阔的前景。在本文中,我们实验研究了雾对基于光学相机的VLC技术在车对车(V2V)通信中的影响。基于实际车辆环境中实际的车辆间距离,并使用真实的汽车尾灯作为发射器,考虑5-120米的气象能见度范围。我们将信号的调制指数从1降低到0.75和0.5,以便在发送“0”符号时跟踪光源。结果表明,在3种调制指数情景下,在20 m气象能见度下链路是无误差的,在10 m气象能见度以下链路明显降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation of the Effects of Fog on Optical Camera-based VLC for a Vehicular Environment
The widespread increase in the use of light emitting diodes in vehicle’s head and taillights and also the use of dashboard cameras provides great prospects for the optical camera based visible light communications (VLC) technology in intelligent transport systems. In this paper, we experimentally investigate the impact of fog on the optical camera based VLC technology for vehicle-to-vehicle (V2V) communications. A range of meteorological visibilities between 5–120 m is considered based on realistic inter-vehicle distances in practical vehicular environments and using a real car taillight as the transmitter. We show a reduction in the index of modulation of the signals from 1 to 0.75 and 0.5 to allow for tracking purposes of the light source when sending ‘0’ symbols. The results show that, the link is error-free up to 20 m meteorological visibility for the three modulation index scenarios and degrades considerably below 10 m meteorological visibility.
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