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A Bayesian treatment of the stereo correspondence problem using half-occluded regions

机译:使用半遮挡区域的立体对应问题的贝叶斯处理

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A half-occluded region in a stereo pair is a set of pixels in one image representing points in space visible to that camera or eye only, and not to the other. These occur typically as parts of the background immediately to the left and right sides of nearby occluding objects, and are present in most natural scenes. Previous approaches to stereo either ignored these unmatchable points or attempted to weed them out in a second pass. An algorithm that incorporates them from the start as a strong clue to depth discontinuities is presented. The authors first derive a measure for goodness of fit and a prior based on a simplified model of objects in space, which leads to an energy functional depending both on the depth as measured from a central cyclopean eye and on the regions of points occluded from the left and right eye perspectives. They minimize this using dynamic programming along epipolar lines followed by annealing in both dimensions. Experiments indicate that this method is very effective even in difficult scenes.
机译:立体声对中的半遮挡区域是一个图像中的一组像素,这些像素代表该相机或眼睛只能看到的空间,而另一只眼睛则看不到。这些通常是作为背景的一部分,紧邻附近的遮挡对象的左侧和右侧,并且出现在大多数自然场景中。以前的立体声方法要么忽略了这些无法匹配的点,要么尝试在第二遍清除它们。提出了一种从一开始就将它们合并为深度不连续性的有力线索的算法。作者首先基于简化的空间物体模型得出适合度和先验性的度量,这导致能量函数依赖于从中央独眼眼测得的深度和被遮挡物遮挡的点的区域。左眼和右眼的观点。他们通过沿极线进行动态编程,然后在两个方向上进行退火,从而将这种情况最小化。实验表明,即使在困难的场景下,该方法也非常有效。

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