Title :
Coding Artifact Reduction Based on Local Entropy Analysis
Author :
Shao, Ling ; Kirenko, Ihor
Author_Institution :
High Tech., Eindhoven
fDate :
5/1/2007 12:00:00 AM
Abstract :
Coding artifacts are very annoying in highly compressed images and video sequences. Most artifact reduction techniques blur the details of the images while removing various coding artifacts. In this paper, we propose a novel and explicit approach for classifying blocks into detailed regions, intermediate regions and smooth regions. The classification is based on the information content of the underlying region. The information content of a region is quantized by local entropy, which is calculated on the PDF of the pixel intensity distribution. Local entropy is used as an indicator of how much smoothing is needed for a certain region. It is well known that blocking artifacts are more visible in flat regions than in detailed regions. We apply mild low-pass filters on detailed regions to preserve the sharpness, and strong low-pass filters on flat regions to remove the severe blocking artifacts. Experimental results show that our proposed algorithm can preserve the details and reduce coding artifacts better than more expensive state of the art techniques .
Keywords :
adaptive filters; data compression; entropy codes; image classification; image sequences; low-pass filters; quantisation (signal); smoothing methods; video coding; PDF; adaptive filter; artifact coding reduction; block classification; image compression; local entropy analysis; local entropy quantization; low-pass filters; video sequences compression; Discrete cosine transforms; Entropy; Filtering; HDTV; Image coding; Liquid crystal displays; Low pass filters; Plasma displays; Video compression; Video sequences;
Journal_Title :
Consumer Electronics, IEEE Transactions on
DOI :
10.1109/TCE.2007.381747