DocumentCode
1097407
Title
Probabilistic Confidence Measures for Block Matching Motion Estimation
Author
Patras, Ioannis ; Hendriks, Emile A. ; Lagendijk, Reginald L.
Author_Institution
Queen Mary Univ., London
Volume
17
Issue
8
fYear
2007
Firstpage
988
Lastpage
995
Abstract
This paper addresses the problem of deriving measures that express the degree of the reliability of motion vectors estimated by a block-matching motion estimation method. We express the block matching motion estimation scheme in the probabilistic framework as a maximum-likelihood estimation scheme. Subsequently, we derive the confidence measures in terms of the a posteriori probabilities and the likelihoods of the estimated vectors. The assumptions about the type of the likelihood, that is, about the underlying conditional probability distribution of the motion compensated intensity differences (e.g., Laplacian) are derived from the objective criterion of the block-matching estimator. All parameters are estimated from data that are derived as by-product of the motion estimation scheme and our method, practically, introduces no additional computational cost. The derivation of the confidence measures is incorporated in a multiscale scheme. Experimental results are presented for image sequences with known ground-truth motion.
Keywords
image matching; image sequences; maximum likelihood estimation; motion compensation; motion estimation; statistical distributions; a posteriori probabilities; block matching; ground-truth motion; image sequences; maximum-likelihood estimation; motion compensation; motion estimation; multiscale scheme; probabilistic confidence measures; probability distribution; Computational efficiency; Covariance matrix; Image motion analysis; Laplace equations; Maximum likelihood estimation; Motion estimation; Motion measurement; Optical sensors; Parameter estimation; Probability distribution; Block matching; maximum-likelihood (ML) estimation; motion estimation; probabilistic confidence measures;
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
ISSN
1051-8215
Type
jour
DOI
10.1109/TCSVT.2007.903121
Filename
4291639
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