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Study of Three-Dimensional Sensing by Using Inverse Square Law

机译:用平方反比法研究三维传感

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Because a sense of reality of a stereopicture used to display a real scene is better than that of a two-dimensional image, the former has been widely paid much attention in application. Recently, there are several methods used on three-dimensional sensing. In this study, our system to construct a stereopicture is composed of a single co-axial point-light source associated with a video camera. Different images of a scene could be taken by the camera when the light source was moving away relative to the scene from a point to another one. Based on the inverse square law for light intensity, the depth information of a scene can be obtained by using the pixel ratio obtained from two consecutive frames. Because the gray-level of each pixel in an image taken by the camera is related to an angle made by the line of sight of the pixel with the optical axis, the image plane is bent. Comparison the distance measured from the camera to the object with theoretical data obtained by the inverse square law, we found that their error corresponding to different pixels located at the margin of the image plane is higher than that at the center of the image plane. However, this problem can be improved by making an angular correction. Consequently, a low-pass filter was used to smooth the raw data of the range to reduce the distance error.
机译:因为用于显示真实场景的立体图像的真实感比二维图像的真实感更好,所以前者在应用中受到了广泛的关注。近来,在三维感测上使用了几种方法。在这项研究中,我们构造立体图像的系统由与摄像机关联的单个同轴点光源组成。当光源相对于场景从一个点移动到另一个场景时,摄像机可以拍摄场景的不同图像。基于光强度的平方反比定律,可以通过使用从两个连续帧获得的像素比率来获得场景的深度信息。由于相机拍摄的图像中每个像素的灰度级与像素视线与光轴所成的角度有关,因此图像平面会弯曲。将相机到物体的距离与平方反比定律获得的理论数据进行比较,我们发现它们对应于位于像平面边缘的不同像素的误差高于像平面中心的误差。但是,可以通过进行角度校正来改善该问题。因此,使用低通滤波器对范围的原始数据进行平滑处理以减少距离误差。

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