DocumentCode
950170
Title
Blocking artifact detection and reduction in compressed data
Author
Triantafyllidis, George A. ; Tzovaras, Dimitrios ; Strintzis, Michael Gerassimos
Author_Institution
Inf. Process. Lab., Aristotle Univ. of Thessaloniki, Greece
Volume
12
Issue
10
fYear
2002
fDate
10/1/2002 12:00:00 AM
Firstpage
877
Lastpage
890
Abstract
A novel frequency-domain technique for image blocking artifact detection and reduction is presented. The algorithm first detects the regions of the image which present visible blocking artifacts. This detection is performed in the frequency domain and uses the estimated relative quantization error calculated when the discrete cosine transform (DCT) coefficients are modeled by a Laplacian probability function. Then, for each block affected by blocking artifacts, its DC and AC coefficients are recalculated for artifact reduction. To achieve this, a closed-form representation of the optimal correction of the DCT coefficients is produced by minimizing a novel enhanced form of the mean squared difference of slope for every frequency separately. This correction of each DCT coefficient depends on the eight neighboring coefficients in the subband-like representation of the DCT transform and is constrained by the quantization upper and lower bound. Experimental results illustrating the performance of the proposed method are presented and evaluated.
Keywords
Laplace transforms; data compression; discrete cosine transforms; frequency-domain analysis; image coding; probability; quantisation (signal); AC coefficients; DC coefficients; DCT coefficients; Laplacian probability function; compressed data; discrete cosine transform; frequency-domain technique; image blocking artifact detection; image blocking artifact reduction; mean squared difference; quantization error; quantization lower bound; quantization upper bound; subband-like representation; visible blocking artifacts; Decoding; Discrete cosine transforms; Frequency domain analysis; Image coding; Image reconstruction; Information processing; Laplace equations; Pixel; Quantization; Transform coding;
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
ISSN
1051-8215
Type
jour
DOI
10.1109/TCSVT.2002.804880
Filename
1058217
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