Image-sensor-based visible light communication for automotive applications
Связь по видимому свету на основе датчиков изображения для автомобильных применений
2014-07-01
SCID: 54.1/67u2t2q4
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CMOS image sensorautomotive safetyimage-sensor-based visible light communicationvehicle-to-infrastructure communicationvehicle-to-vehicle communication
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Abstract (AI)
The present article introduces VLC for automotive applications using an image sensor. In particular, V2I-VLC and V2V-VLC are presented. While previous studies have documented the effectiveness of V2I and V2V communication using radio technology in terms of improving automotive safety, in the present article, we identify characteristics unique to image-sensor-based VLC as compared to radio wave technology. The two primary advantages of a VLC system are its line-of-sight feature and an image sensor that not only provides VLC functions, but also the potential vehicle safety applications made possible by image and video processing. Herein, we present two ongoing image-sensor-based V2I-VLC and V2VVLC projects. In the first, a transmitter using an LED array (which is assumed to be an LED traffic light) and a receiver using a high-framerate CMOS image sensor camera is introduced as a potential V2I-VLC system. For this system, real-time transmission of the audio signal has been confirmed through a field trial. In the second project, we introduce a newly developed CMOS image sensor capable of receiving highspeed optical signals and demonstrate its effectiveness through a V2V communication field trial. In experiments, due to the high-speed signal reception capability of the camera receiver using the developed image sensor, a data transmission rate of 10 Mb/s has been achieved, and image (320 × 240, color) reception has been confirmed together with simultaneous reception of various internal vehicle data, such as vehicle ID and speed.
Key Findings
1
A V2I-VLC field trial using an LED-array transmitter and high-framerate CMOS camera receiver demonstrated real-time audio transmission.
2
A newly developed high-speed CMOS image sensor enabled V2V data transmission at 10 Mb/s in a field trial.
3
Image-sensor VLC provides line-of-sight communication while also supporting vehicle-safety functions through image and video processing.
4
The V2V system received 320 × 240 color images simultaneously with vehicle data including vehicle ID and speed.
5
The paper presents image-sensor-based visible light communication systems for vehicle-to-infrastructure and vehicle-to-vehicle applications.
Research Object
image-sensor-based visible light communication systems for vehicle-to-infrastructure and vehicle-to-vehicle automotive applications
Research Subject
the communication performance and automotive safety potential of line-of-sight VLC using LED-array transmitters and high-speed CMOS image-sensor receivers
Publication Details
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2014-07-01
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