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Description and reconstruction from image trajectories of rotational motion

机译:从旋转运动的图像轨迹描述和重建

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A novel technique is presented for reconstructing the 3-D structure, and motion, of a scene undergoing relative rotational motion with respect to the camera. Given image correspondences of point features tracked over many frames, first, a grouping algorithm developed which exploits spatio-temporal constraints of the common motion to achieve a reliable description of discrete point correspondences as curved trajectories (general conics in the case of rotational motion) in the image plane. In contrast, trajectories fitted to points independent of each other lead to arbitrary image descriptions and very inaccurate 3-D parameters. Second, a novel closed-form solution, under perspective projection, for the 3-D motion and location of points from the computed image trajectories is presented. Both stages are applied to real image sequences with good results.
机译:提出了一种新颖的技术,用于重建经历相对于摄像机的相对旋转运动的场景的3D结构和运动。给定在多个帧上跟踪的点特征的图像对应关系,首先,开发了一种分组算法,该算法利用共同运动的时空约束来可靠地将离散点对应关系描述为弯曲轨迹(在旋转运动情况下为一般圆锥形)。图像平面。相反,拟合到彼此独立的点的轨迹导致任意图像描述和非常不准确的3D参数。其次,在透视投影下,提出了一种新颖的封闭形式的解决方案,用于3D运动和来自计算图像轨迹的点的位置。这两个阶段均应用于真实图像序列,效果良好。

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