DocumentCode :
3579471
Title :
Motion modeling of mobile transmitter for image sensor based I2V-VLC, V2I-VLC, and V2V-VLC
Author :
Kinoshita, Masayuki ; Yamazato, Takaya ; Okada, Hiraku ; Fujii, Toshiaki ; Arai, Shintaro ; Yendo, Tomohiro ; Kamakura, Koji
Author_Institution :
Nagoya Univ., Nagoya, Japan
fYear :
2014
Firstpage :
450
Lastpage :
455
Abstract :
Visible light communication (VLC) using light-emitting diodes (LEDs) is drawing much attention. There are two types of VLC reception devices, a photodiode and an image sensor. VLC using image sensor is called image sensor based VLC. As the receiver only uses the image sensor pixels that sense LED transmission sources and discards other pixels, including those sensing noise sources, image sensor based VLC is an attractive solution for outdoor mobile applications. However, little evidence is available for channel modeling of image sensor based VLC in mobile outdoor environments, especially for motion modeling of VLC transmitter. In this paper, we propose a motion model of VLC transmitter. In particular, we consider three cases; infrastructure-to-vehicle VLC (I2V-VLC), vehicle-to-infrastructure VLC (V2I-VLC), and vehicle-to-vehicle VLC (V2V-VLC). As a result, we show that the motion model of the VLC transmitter on the captured image for the three aforementioned situations (i.e., I2V-VLC, V2I-VLC, and V2V-VLC) can be expressed in the identical pinhole camera model.
Keywords :
image motion analysis; image sensors; mobile radio; optical communication; optical sensors; optical transmitters; radio transmitters; I2V-VLC case; LED transmission; V2I-VLC case; V2V-VLC case; VLC reception device; VLC transmitter; channel modeling; identical pinhole camera model; image sensor; infrastructure-to-vehicle case; light-emitting diode; mobile outdoor environment; mobile transmitter; motion modeling; noise source sensor; photodiode; vehicle-to-infrastructure case; vehicle-to-vehicle case; visible light communication; Cameras; Image sensors; Optical imaging; Optical receivers; Optical transmitters; Vehicles; Vibrations; Image sensor; Intelligent Transport System (ITS); Motion model; Pinhole camera model; Visible Light Communication (VLC);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Globecom Workshops (GC Wkshps), 2014
Type :
conf
DOI :
10.1109/GLOCOMW.2014.7063473
Filename :
7063473
Link To Document :
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