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Image-sensor-based visible light communication for automotive applications

机译:用于汽车应用的基于图像传感器的可见光通信

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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.
机译:本文介绍了使用图像传感器的汽车应用VLC。特别地,提出了V2I-VLC和V2V-VLC。尽管先前的研究已经证明了使用无线电技术进行V2I和V2V通信在提高汽车安全性方面的有效性,但在本文中,我们确定了与无线电波技术相比,基于图像传感器的VLC所特有的特征。 VLC系统的两个主要优点是其视线功能和图像传感器,不仅提供VLC功能,而且还可以通过图像和视频处理实现潜在的车辆安全应用。在此,我们介绍了两个正在进行的基于图像传感器的V2I-VLC和V2VVLC项目。首先,介绍了使用LED阵列(假定为LED交通灯)的发射器和使用高帧率CMOS图像传感器摄像机的接收器作为潜在的V2I-VLC系统。对于该系统,已经通过现场试验确认了音频信号的实时传输。在第二个项目中,我们介绍了一种新开发的能够接收高速光信号的CMOS图像传感器,并通过V2V通信现场试验证明了其有效性。在实验中,由于使用已开发的图像传感器的相机接收器具有高速信号接收能力,因此可以实现10 Mb / s的数据传输速率,并且可以一起确认图像(320 ?? 240,彩色)接收同时接收各种内部车辆数据,例如车辆ID和速度。

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