首页> 外文会议>Robotics and Automation, 1995. Proceedings., 1995 IEEE International Conference on >Detecting object surfaces by using occlusion information from active binocular stereo
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Detecting object surfaces by using occlusion information from active binocular stereo

机译:通过使用主动双眼立体声的遮挡信息检测物体表面

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We propose a method to detect polyhedral object surfaces by using "occlusion information" from active binocular stereo. Occlusion information announces whether each feature point in the scene is visible or not from each viewpoint from which an image has been taken; this is a useful geometric cue to suppose the existence of object surfaces. It is very difficult for conventional stereo methods to obtain this information. Two complementary algorithms based on occlusion information decide whether or not there is a surface between each hypothetical 3D segment called "arc" which corresponds two successive image feature points along an epipolar line. The final surface description of the proposed method is a set of these arcs classified into three states: 1) there is a surface, 2) there is no surface, 3) it is unknown whether or not there is a surface. Our method can reliably detect polyhedral object surfaces that are visible and occlude other objects in the scene. Experimental results of the proposed method applied to the actual scene are also presented.
机译:我们提出了一种方法,该方法通过使用主动双眼立体中的“遮挡信息”来检测多面体物体表面。遮挡信息宣布从拍摄图像的每个视点来看场景中的每个特征点是否可见;这是假设物体表面存在的有用几何提示。传统的立体声方法很难获得该信息。基于遮挡信息的两个互补算法决定在每个假设的3D片段之间是否存在一个称为“弧”的表面,该表面对应于沿极线的两个连续图像特征点。所提出的方法的最终表面描述是将这些弧划分为三种状态的集合:1)有表面,2)没有表面,3)是否存在表面是未知的。我们的方法可以可靠地检测可见的多面体对象表面并遮挡场景中的其他对象。提出了该方法应用于实际场景的实验结果。

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