具有完全一致性约束的多重单应性估计

W. Chojnacki, Zygmunt L. Szpak, M. Brooks, A. Hengel
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引用次数: 11

摘要

提出了一种新的方法来估计一组由潜在变量连接在一起的相互依赖的单应矩阵。该方法允许执行所有潜在的一致性约束,同时考虑到每个单独矩阵的规模的任意性。假设输入数据是由忽略一致性约束的图像数据估计得到的一组单应性矩阵的形式,并附加一组与这些矩阵估计相关的误差协方差。提出了一个成本函数,通过优化,将输入数据升级为满足约束的一组单应矩阵。该函数对于输入矩阵的任何单个尺度的变化都是不变的。该方法应用于三维场景中两个视图之间由多个平面引起的一组单应矩阵的估计问题。实验结果表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple Homography Estimation with Full Consistency Constraints
A novel approach is presented to estimating a set of interdependent homography matrices linked together by latent variables. The approach allows enforcement of all underlying consistency constraints while accounting for the arbitrariness of the scale of each individual matrix. The input data is assumed to be in the form of a set of homography matrices obtained by estimation from image data with the consistency constraints ignored, appended by a set of error covariances associated with these matrix estimates. A cost function is proposed for upgrading, via optimisation, the input data to a set of homography matrices satisfying the constraints. The function is invariant to a change of any of the individual scales of the input matrices. The proposed approach is applied to the particular problem of estimating a set of homography matrices induced by multiple planes in the 3D scene between two views. Experimental results are given which demonstrate the effectiveness of the approach.
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