DocumentCode :
2231476
Title :
Optical flow constraint equation extended to transparency
Author :
Pingault, M. ; Pellerin, D.
Author_Institution :
Lab. des Images et des Signaux (LIS), INPG, Grenoble, France
fYear :
2002
fDate :
3-6 Sept. 2002
Firstpage :
1
Lastpage :
4
Abstract :
Motion transparency phenomena in image sequences are frequent but classical methods of motion estimation are unable to deal with them. This paper describes a method for estimating optical flow by a generalization of the brightness constancy assumption to additive transparencies. This assumption is based on three successive images of a sequence. Thus, by a development to its second order, we obtain an extension of the optical flow constraint equation. The approach assumes that motion is translational on a region large enough in order to regularize the aperture problem. In the way of avoiding outliers, due to a non respect of the brightness constancy assumption, a robust multi-resolution method is used. It is composed of a low-pass pyramid and a M-estimator technique. This method offers some good results on artificial and natural image sequences.
Keywords :
brightness; image resolution; image sequences; motion estimation; transparency; M-estimator technique; additive transparency; brightness constancy assumption generalization; image sequences; low-pass pyramid; motion estimation; motion transparency phenomena; optical flow constraint equation; optical flow estimation; robust multiresolution method; Computer vision; Equations; Estimation; Image sequences; Mathematical model; Optical imaging; Robustness;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing Conference, 2002 11th European
Conference_Location :
Toulouse
ISSN :
2219-5491
Type :
conf
Filename :
7071902
Link To Document :
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