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Motion and structure from point correspondences with error estimation: planar surfaces

机译:来自点的运动和结构与误差估计:平面

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摘要

The determination of motion and structure of a planar scene from monocular image sequences, is studied. A new and simpler linear algorithm, that gives closed-form solutions for motion and structure parameters using point correspondences between two images, assuming that the coplanar points undergo a rigid motion in 3-D space, is presented. A series of analytical results is established. From two perspective views of a planar scene which is undergoing a rigid motion, there are generally two (normalized) interpretations for motion parameters and the positions of the object plane. These two interpretations, one vertical and the other illusive, are both valid in the sense that they render the same pair of images. The authors identify all the special cases in which the number of interpretations is not two, and derive necessary and sufficient geometrical conditions for those special cases to occur. The approach to error estimation is based on the first-order perturbation. The estimated errors provide quantitative assessment for the accuracy of the solutions. They also indicate degenerate or nearly degenerate configurations in the presence of noise.
机译:研究了从单眼图像序列确定平面场景的运动和结构的方法。提出了一种新的,更简单的线性算法,该算法使用两个图像之间的点对应关系来给出运动和结构参数的闭式解,假设共面点在3-D空间中经历了刚性运动。建立了一系列分析结果。从正在经历刚性运动的平面场景的两个透视图来看,通常对运动参数和物平面的位置有两种(规范化)解释。这两种解释(一种是垂直的,另一种是虚幻的)在它们渲染同一对图像的意义上都是有效的。作者确定了其中解释次数不为两个的所有特殊情况,并得出了发生这些特殊情况的必要和充分的几何条件。误差估计的方法基于一阶扰动。估计的误差为解决方案的准确性提供了定量评估。它们还指示存在噪声时简并或简简的构型。

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