Motion Estimation for Large Displacements and Deformations
Qiao Chen, Charalambos Poullis

TL;DR
HybridFlow is a novel variational motion estimation framework that effectively handles large displacements and deformations in optical flow, outperforming existing methods on benchmark datasets without requiring training.
Contribution
The paper introduces HybridFlow, a multi-scale hybrid matching approach that improves large displacement optical flow estimation by handling deformations and large motions without training.
Findings
HybridFlow outperforms state-of-the-art variational methods on benchmarks.
HybridFlow achieves comparable results to deep-learning techniques.
The approach is robust to large displacements and scene deformations.
Abstract
Large displacement optical flow is an integral part of many computer vision tasks. Variational optical flow techniques based on a coarse-to-fine scheme interpolate sparse matches and locally optimize an energy model conditioned on colour, gradient and smoothness, making them sensitive to noise in the sparse matches, deformations, and arbitrarily large displacements. This paper addresses this problem and presents HybridFlow, a variational motion estimation framework for large displacements and deformations. A multi-scale hybrid matching approach is performed on the image pairs. Coarse-scale clusters formed by classifying pixels according to their feature descriptors are matched using the clusters' context descriptors. We apply a multi-scale graph matching on the finer-scale superpixels contained within each matched pair of coarse-scale clusters. Small clusters that cannot be further…
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Taxonomy
TopicsAdvanced Vision and Imaging · Advanced Image and Video Retrieval Techniques · Glaucoma and retinal disorders
