On the direct determination of epipoles: a case study in algebraic methods for geometric problems

Q. Luong, O. Faugeras
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引用次数: 6

Abstract

Studies experimentally the problem of computing the position of the epipoles in a pair of uncalibrated images. The approach, which is based on the definition of the epipolar transformation, exploits algebraic constraints obtained from point correspondences and provides a direct solution in which only the epipoles are involved. This is in opposition with the methods based on the computation of the fundamental matrix. In order to obtain a robust solution, three families of methods are successively considered: the first one uses statistics on closed-form solutions provided by the so-called Sturm method, the second one finds the intersection of plane cubics by deterministic procedures, and the third one is based on non-linear minimizations of a difference of cross-ratios. The authors discuss the shortcomings of each of these and show, using numerous experimental comparisons, that a drastic improvement can be obtained.
关于极点的直接确定:几何问题代数方法的一个案例研究
实验研究了一对未标定图像中极点位置的计算问题。该方法基于表极变换的定义,利用由点对应得到的代数约束,提供了只涉及表极的直接解。这与基于基本矩阵计算的方法是相反的。为了得到鲁棒解,我们依次考虑了三种方法:第一种是利用所谓的Sturm方法提供的闭形式解的统计量,第二种是通过确定性程序找到平面立方体的交点,第三种是基于交叉比差的非线性最小化。作者讨论了每一种方法的缺点,并通过大量的实验比较表明,可以得到极大的改进。
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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