DocumentCode
1764516
Title
Joint Framework for Motion Validity and Estimation Using Block Overlap
Author
Santoro, Maurizio ; AlRegib, Ghassan ; Altunbasak, Y.
Author_Institution
Center for Signal & Image Process. (CSIP), Georgia Inst. of Technol., Atlanta, GA, USA
Volume
22
Issue
4
fYear
2013
fDate
41365
Firstpage
1610
Lastpage
1619
Abstract
This paper presents a block-overlap-based validity metric for use as a measure of motion vector (MV) validity and to improve the quality of the motion field. In contrast to other validity metrics in the literature, the proposed metric is not sensitive to image features and does not require the use of neighboring MVs or manual thresholds. Using a hybrid de-interlacer, it is shown that the proposed metric outperforms other block-based validity metrics in the literature. To help regularize the ill-posed nature of motion estimation, the proposed validity metric is also used as a regularizer in an energy minimization framework to determine the optimal MV. Experimental results show that the proposed energy minimization framework outperforms several existing motion estimation methods in the literature in terms of MV and interpolation quality. For interpolation quality, our algorithm outperforms all other block-based methods as well as several complex optical flow methods. In addition, it is one of the fastest implementations at the time of this writing.
Keywords
image sequences; interpolation; motion estimation; MV validity; block overlap; block-based validity metrics; complex optical flow methods; energy minimization framework; hybrid de-interlacer; image features; interpolation quality; motion estimation; motion field quality; motion vector validity; Context; Correlation; Image edge detection; Measurement; Minimization; Motion estimation; Vectors; Block matching; de-interlacing; motion vector (MV); reliability; true motion estimation; validity;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2012.2235452
Filename
6389776
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