DocumentCode :
73885
Title :
Robust Automatic Line Scratch Detection in Films
Author :
Newson, Alasdair ; Almansa, A. ; Gousseau, Yann ; Perez, Pablo
Author_Institution :
Technicolor, Cesson-Sevigne, France
Volume :
23
Issue :
3
fYear :
2014
fDate :
Mar-14
Firstpage :
1240
Lastpage :
1254
Abstract :
Line scratch detection in old films is a particularly challenging problem due to the variable spatiotemporal characteristics of this defect. Some of the main problems include sensitivity to noise and texture, and false detections due to thin vertical structures belonging to the scene. We propose a robust and automatic algorithm for frame-by-frame line scratch detection in old films, as well as a temporal algorithm for the filtering of false detections. In the frame-by-frame algorithm, we relax some of the hypotheses used in previous algorithms in order to detect a wider variety of scratches. This step´s robustness and lack of external parameters is ensured by the combined use of an a contrario methodology and local statistical estimation. In this manner, over-detection in textured or cluttered areas is greatly reduced. The temporal filtering algorithm eliminates false detections due to thin vertical structures by exploiting the coherence of their motion with that of the underlying scene. Experiments demonstrate the ability of the resulting detection procedure to deal with difficult situations, in particular in the presence of noise, texture, and slanted or partial scratches. Comparisons show significant advantages over previous work.
Keywords :
filtering theory; image motion analysis; image texture; statistical analysis; cluttered area; contrario methodology; false detection filtering; films; frame-by-frame line scratch detection; local statistical estimation; motion coherence; noise; over-detection reduction; partial scratch; robust automatic algorithm; robust automatic line scratch detection; slanted scratch; temporal algorithm; textured area; variable spatiotemporal characteristics; vertical structures; Adaptation models; Approximation methods; Detection algorithms; Image restoration; Image segmentation; Noise; Robustness; Film restoration; a contrario methods; adaptive detection; affine motion estimation; line scratches;
fLanguage :
English
Journal_Title :
Image Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1057-7149
Type :
jour
DOI :
10.1109/TIP.2014.2300824
Filename :
6720161
Link To Document :
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