Motion estimation in image sequences using the deformation of apparent contours

Kalle Åström, Fredrik Kahl
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引用次数: 45

Abstract

The problem of determining the camera motion from apparent contours or silhouettes of curved three-dimensional surfaces is considered. In a sequence of images is shown how to use the generalized epipolar constraint on apparent contours. One such constraint is obtained for each epipolar tangency point in each image pair. Thus in theory the motion can be calculated from the deformation of a single contour. A robust algorithm for computing the motion is presented based on the maximum likelihood estimate. It is shown how to generate initial estimates on the camera motion using only the tracked contours. It is also shown how to improve this estimate by maximizing the likelihood function. The algorithm has been tested on real image sequences. The result is compared to that of using only point features. The statistical evaluation shows that the technique gives accurate and stable results.
基于视轮廓变形的图像序列运动估计
考虑了从三维曲面的视轮廓或轮廓确定摄像机运动的问题。在一系列图像中,展示了如何在表观轮廓上使用广义极约束。对每个图像对中的每个极缘切点得到一个这样的约束。因此,从理论上讲,运动可以由单个轮廓的变形来计算。提出了一种基于极大似然估计的鲁棒运动计算算法。演示了如何仅使用跟踪轮廓生成相机运动的初始估计。还展示了如何通过最大化似然函数来改进这种估计。该算法已在实际图像序列上进行了测试。并与仅使用点特征的结果进行了比较。统计评价表明,该方法的结果准确、稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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