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ILLUMINATION ROBUST OPTICAL FLOW ESTIMATION BY ILLUMINATION-CHROMATICITY DECOUPLING

Cited 2 time in Web of Science Cited 2 time in Scopus
Authors

Park, Sungheon; Kwak, Nojun

Issue Date
2015
Publisher
IEEE
Citation
2015 IEEE INTERNATIONAL CONFERENCE ON IMAGE PROCESSING (ICIP), pp.1910-1914
Abstract
In this paper, a novel optical flow algorithm which is robust to illumination variation is proposed. HSL color space is adopted to decouple illumination and chromaticity information. The chromaticity component is normalized by chroma and transformed to the cartesian coordinate. Then, the decoupled distance is defined using both illumination and chromaticity. Cost function for the optical flow is formulated using l(1) norm of the decoupled distance with Huber norm regularization term. The cost function is efficiently minimized by utilizing Legendre-Fenchel transform. Optical flow field is further refined via weighted median filter whose weight is also based on the decoupled distance. Experimental results show that the proposed method works robustly even in the presence of severe illumination variation.
ISSN
1522-4880
URI
https://hdl.handle.net/10371/207322
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  • Graduate School of Convergence Science & Technology
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Research Area Feature Selection and Extraction, Object Detection, Object Recognition

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