Optical flow by nonlinear relaxation

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In this paper, we present a local approach to the computation of raw optical flow fields based on nonlinear relaxation, which is explicitly designed to be coupled with a nonlinear vector filtering technique so as to achieve an effective rejection of the outliers. We derive the approach from a standard linear algorithm—the one-dimensional least squares. This is split down into two steps. First, the linear algorithm is formulated as an iterative procedure, in which image points in a suitable geometric neighborhood are made to interact each other. Second, a nonlinearity term in the elementary interaction between neighbors is added, which depends on the Gaussian interaction of elements of a velocity neighborhood. The results of a comparison with two linear local techniques show clearly the effectiveness of the approach, both in terms of motion boundary preservation and of optical flow field density.

论文关键词:Optical flow,Relaxation methods,Optimization,Nonlinear filtering

论文评审过程:Received 28 July 1993, Revised 23 September 1993, Accepted 30 November 1994, Available online 7 June 2001.

论文官网地址:https://doi.org/10.1016/0031-3203(94)00144-B