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      Camera Calibration by Global Constraints on the Motion of Silhouettes

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          Abstract

          We address the problem of epipolar geometry using the motion of silhouettes. Such methods match epipolar lines or frontier points across views, which are then used as the set of putative correspondences. We introduce an approach that improves by two orders of magnitude the performance over state-of-the-art methods, by significantly reducing the number of outliers in the putative matching. We model the frontier points' correspondence problem as constrained flow optimization, requiring small differences between their coordinates over consecutive frames. Our approach is formulated as a Linear Integer Program and we show that due to the nature of our problem, it can be solved efficiently in an iterative manner. Our method was validated on four standard datasets providing accurate calibrations across very different viewpoints.

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          Most cited references16

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          On the Theory of Dynamic Programming.

          R Bellman (1952)
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            The visual hull concept for silhouette-based image understanding

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              Disjoint paths in a network

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                Author and article information

                Journal
                2017-04-14
                Article
                1704.04360
                d90e50c5-70b1-4eca-9288-5d5b536f633f

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                cs.CV

                Computer vision & Pattern recognition
                Computer vision & Pattern recognition

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