实现了一种非线性运动对应问题的方法

S. Fogel
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引用次数: 2

摘要

从一个时变图像序列的连续图像的变化可以用速度矢量场来表征。速度矢量场的估计被确定为除了正则化约束之外还要满足两组约束的折衷:光流约束(与序列连续图像对应点的时变图像函数值有关)和方向平滑约束(与相邻速度矢量值有关)。为了达到这样的折衷,作者引入了速度矢量场未知估计的非线性方程组。提出了一种求解该系统的状态迭代法。光流和平滑约束被选择性地抑制在遮挡边界的邻域中。最后一种方法是通过给每个约束附加权重来实现的。序列的连续图像值的空间变化,与当前估计的速度矢量场指定的对应关系,以及当前估计的速度矢量本身的变化被隐式地用于调整权重函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of a nonlinear approach to the motion correspondence problem
Changes in successive images from a time-varying image sequence of a scene can be characterized by velocity vector fields. The estimate of the velocity vector field is determined as a compromise to satisfy two sets of constraints in addition to the regularization constraints: the optical flow constraints, which relate the values of time-varying image function at corresponding points of the successive images of the sequence, and the directional smoothness constraints, which relate the values of the neighboring velocity vectors. To achieve such a compromise, the author introduces the system of nonlinear equations of the unknown estimate of the velocity vector field. A state iterative method for solving this system is developed. The optical flow and smoothness constraints are selectively suppressed in the neighborhoods of the occlusion boundaries. The last is accomplished by attaching a weight to each constraint. The spatial variations in the values of the successive images of the sequence, with the correspondence specified by a current estimate of the velocity vector field, and variations in the current estimate of the velocity vectors themselves are implicitly used to adjust the weight function.<>
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