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Video matting of complex scenes
Author(s) -
YungYu Chuang,
Aseem Agarwala,
Brian Curless,
David Salesin,
Richard Szeliski
Publication year - 2002
Publication title -
citeseer x (the pennsylvania state university)
Language(s) - English
Resource type - Conference proceedings
ISSN - 0730-0301
ISBN - 1-58113-521-1
DOI - 10.1145/566570.566572
Subject(s) - computer science , computer vision , artificial intelligence , optical flow , computer graphics (images) , computation , process (computing) , flow (mathematics) , image (mathematics) , mathematics , algorithm , geometry , operating system
This paper describes a new framework for video matting, the process of pulling a high-quality alpha matte and foreground from a video sequence. The framework builds upon techniques in natural image matting, optical flow computation, and background estimation. User interaction is comprised of garbage matte specification if background estimation is needed, and hand-drawn keyframe segmentations into "foreground," "background" and "unknown". The segmentations, called trimaps, are interpolated across the video volume using forward and backward optical flow. Competing flow estimates are combined based on information about where flow is likely to be accurate. A Bayesian matting technique uses the flowed trimaps to yield high-quality mattes of moving foreground elements with complex boundaries filmed by a moving camera. A novel technique for smoke matte extraction is also demonstrated.

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