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Relative velocity measurement using low cost single camera-based stereo vision system

机译:基于低成本单相机的立体视觉系统的相对速度测量

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摘要

Measurement of depth and relative velocity of a moving object from a camera system are the most important issues in different applications of computer vision such as robotic vision, intelligent vehicle etc. From the human stereo vision system, we know that, there is a slight difference between the two images captured by our two eyes at a particular instant due to the difference in positions of our eyes on our face. This difference is known as disparity and has a significant role in determining the distance of an object from our eyes. The same principle and disparity may be used as a parameter for measuring the relative velocity of an object which has relative motion towards or away from the camera system. This article presents a novel low cost, low resolution stereo vision system based on a single camera, which may be used to measure the position and relative velocity of a moving object. This new system is very simple in design, low cost and capable of measuring the depth and relative velocity with desirable accuracy. (C) 2019 Elsevier Ltd. All rights reserved.
机译:从相机系统的移动物体的深度和相对速度的测量是计算机愿景的不同应用中最重要的问题,如机器人视觉,智能车辆等。从人体立体视觉系统,我们知道,有一个轻微的差异由于我们脸上眼睛的位置差异,我们两只眼睛捕获的两个图像之间的两个图像之间。这种差异被称为差异,并且在确定对象从眼睛的距离方面具有重要作用。相同的原理和差距可以用作用于测量具有相对运动朝向或远离相机系统的物体的相对速度的参数。本文提出了一种基于单个摄像机的新型低成本,低分辨率立体视觉系统,其可用于测量移动物体的位置和相对速度。这种新系统的设计非常简单,成本低,能够以所需的精度测量深度和相对速度。 (c)2019年elestvier有限公司保留所有权利。

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