Recovery and refinement of motion and structure from perspectively projected optical flow

Toshiharu Mukai, Noboru Ohnishi
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引用次数: 0

Abstract

Determination of the 3D motion and structure of an object from its perspectively projected 2D image is one of the most important problems in computer vision. Previous works on shape and motion from optical flow have been unsatisfactory because they require solving nonlinear simultaneous equations using iterative search. In the present paper, we propose a method for the recovery of motion and structure from perspectively projected optical flow of feature points which move rigidly. In order to simplify the computation and obtain clear perspectives, we adopt a spherical image screen and arrange equations in linear form. As a result our method does not require the solution of nonlinear simultaneous equations, but only requires the solution of linear ones. Furthermore, we propose a method for refining the solution of our linear method using a nonlinear iterative search. Simulation results of our method are also presented.
从透视投影光流中恢复和细化运动和结构
从物体的二维投影图像中确定物体的三维运动和结构是计算机视觉中最重要的问题之一。先前关于光流的形状和运动的研究工作并不令人满意,因为它们需要使用迭代搜索来求解非线性联列方程。在本文中,我们提出了一种从刚性运动特征点的透视投影光流中恢复运动和结构的方法。为了简化计算和获得清晰的视角,我们采用球形图像屏,并以线性形式排列方程。因此,我们的方法不需要非线性联立方程的解,而只需要线性方程的解。此外,我们提出了一种使用非线性迭代搜索来改进线性方法的解的方法。最后给出了该方法的仿真结果。
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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