DocumentCode
598802
Title
Multi-resolution patch and window-based priority for digital image inpainting problem
Author
Dang Thanh Trung ; Larabi, C. ; Beghdadi, Azeddine
Author_Institution
Lab. L2TI, Univ. Paris 13, Paris, France
fYear
2012
fDate
15-18 Oct. 2012
Firstpage
280
Lastpage
284
Abstract
Recently, digital image inpainting has attracted strong research interest because of its extensive applications in real life. The terminology “inpainting” refers to automatic restoration of image defects such as scratches or blotches as well as removal of unwanted objects as, for instance, subtitles, logos, etc, such that it is undetectable by viewers without the reference to the original image. Many works on this subject have been published in recent years. This paper introduces a novel unsupervised image completion framework using a modified exemplar-based method in conjunction with a pyramidal representation of an image. A top-down iterative completion is performed gradually with multi-resolution patches and a window-based priority. The proposed approach is verified on different natural images. Also, a comparison with some existing methods coming from literature is carried out and the results show improvement in favor of our approach.
Keywords
image representation; image restoration; iterative methods; unsupervised learning; digital image inpainting problem; exemplar-based method; image restoration; multiresolution patch; pyramidal image representation; top-down iterative completion; unsupervised image completion framework; window-based priority; Computer vision; Digital images; Eigenvalues and eigenfunctions; Image color analysis; Image resolution; Image restoration; Proposals; image completion; inpainting; multi-resolution; pyramid representation; restoration;
fLanguage
English
Publisher
ieee
Conference_Titel
Image Processing Theory, Tools and Applications (IPTA), 2012 3rd International Conference on
Conference_Location
Istanbul
ISSN
2154-5111
Print_ISBN
978-1-4673-2585-1
Type
conf
DOI
10.1109/IPTA.2012.6469544
Filename
6469544
Link To Document