Title :
Characterizing channel fading in vehicular visible light communications with video data
Author :
Zhiyong Cui ; Chenqi Wang ; Hsin-Mu Tsai
Author_Institution :
Dept. of Software & Microelectron., Peking Univ., Beijing, China
Abstract :
There is no prior work in characterizing fading caused by vehicle mobility in vehicular visible light communications (V2LC). Different from a radio frequency (RF) communication link, the path loss of a V2LC link is dictated by not only the transmitter-receiver (T-R) distance, but also the irradiance angle and the incidence angle, which have large variation when the vehicles are in motion. In this paper, we took a novel approach to take a first look at the problem. Utilizing the video data obtained from a dashboard camera and computer vision techniques, we are able to estimate the relative location and angle parameters of neighboring vehicles with great level of detail. These parameters are then used to derive a time function of path loss, with which the autocorrelation and the channel coherence time are calculated. Our results show that V2LC links have much slower channel time variation compared to RF V2V links: the coherence time is at least an order larger.
Keywords :
computer vision; fading channels; mobile communication; mobility management (mobile radio); optical communication; telecommunication links; video signal processing; V2LC link; autocorrelation; channel coherence time; channel fading; computer vision techniques; dashboard camera; incidence angle; irradiance angle; radio frequency communication link; transmitter-receiver distance; vehicle mobility; vehicular visible light communications; video data; Coherence; Fading; Light emitting diodes; Optical losses; Optical transmitters; Radio frequency; Vehicles; Channel Fading; Vehicle-to-Vehicle (V2V) Communications; Vehicular Visible Light Communication (V2LC); Visible Light Communications (VLC);
Conference_Titel :
Vehicular Networking Conference (VNC), 2014 IEEE
Conference_Location :
Paderborn
DOI :
10.1109/VNC.2014.7013353