LED and CMOS Image Sensor Based Optical Wireless Communication System for Automotive Applications

Система оптической беспроводной связи на основе светодиодов и КМОП-датчика изображения для автомобильных применений
Isamu Takai, S. Ito, Keita Yasutomi, Keiichiro Kagawa, Michinori Andoh, Shoji Kawahito
2013-08-08

CMOS image sensorLED detectionautomotive applicationscommunication pixeloptical wireless communication
An optical wireless communication (OWC) system based on a light-emitting-diode (LED) transmitter and a camera receiver has been developed for use in the automotive area. The automotive OWC system will require Mb/s-class data rates and the ability to quickly detect LEDs from an image. The key to achieving this is improvements to the capabilities of the image sensor mounted on the camera receiver. In this paper, we report on a novel OWC system equipped with an optical communication image sensor (OCI), which is newly developed using CMOS technology. To obtain higher transmission rates, the OCI employs a specialized “communication pixel (CPx)” capable of responding promptly to optical intensity variations. Furthermore, a new quick LED detection technique, based on a 1-bit flag image which only reacts to high-intensity objects, is formulated. The communication pixels, ordinary image pixels, and associated circuits (including 1-bit flag image output circuits) are then integrated into the OCI. This paper describes the design, fabrication, and capabilities of the OCI, as well as the development of the LED and image sensor based OWC system, which boasts a 20-Mb/s/pixel data rate without LED detection and a 15-Mb/s/pixel data rate with a 16.6-ms real-time LED detection.
1
A CMOS-based optical communication image sensor (OCI) was developed for LED-camera optical wireless communication in automotive applications.
2
A rapid LED detection method using a 1-bit flag image that responds only to high-intensity objects was formulated and integrated into the sensor.
3
The OCI incorporates specialized communication pixels that respond rapidly to optical intensity variations, enabling higher transmission rates than conventional image pixels.
4
The integrated OCI combines communication pixels, ordinary image pixels, and associated circuitry, including 1-bit flag image output circuits.
5
The resulting system achieved 20-Mb/s/pixel without LED detection and 15-Mb/s/pixel with real-time LED detection completed within 16.6 ms.

An LED-transmitter and CMOS optical-communication-image-sensor (OCI) receiver system for automotive optical wireless communication

The OCI’s high-speed optical signal response, rapid LED detection, pixel and circuit integration, and resulting communication data-rate performance

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2013-08-08
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Isamu Takai
S. Ito
Keita Yasutomi
Keiichiro Kagawa
Michinori Andoh
Shoji Kawahito
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