DocumentCode
1471508
Title
Variable block size coding of images with hybrid quantization
Author
Huh, Y. ; Panusopone, K. ; Rao, K.R.
Author_Institution
Power Telecommun. Lab., Korea Electrotechnol. Res. Inst., Changwon, South Korea
Volume
6
Issue
6
fYear
1996
fDate
12/1/1996 12:00:00 AM
Firstpage
679
Lastpage
685
Abstract
This paper describes a progressive image transmission (PIT) scheme using a variable block size coding technique in conjunction with a variety of quantization schemes in the transform domain. The proposed scheme uses a region growing technique to partition the images so that regions of different sizes can be addressed using a small amount of side information. This segmentation divides the image into five different regions that vary in size based on the details within the image. High detail blocks are classified into four different categories based on the energy distribution followed by vector quantization (VQ), and low-detail blocks are encoded with scalar quantization (SQ). Progressive refinement is achieved by proper masking of the information in the transform domain. Simulation results show that the reconstructed images preserve fine and pleasant qualities based on both subjective and mean square error criteria. Also, the receiver reconstructs more details in each stage so that the observer can recognize the image quickly
Keywords
discrete cosine transforms; image classification; image coding; image reconstruction; image segmentation; transform coding; vector quantisation; visual communication; DCT; VQ; energy distribution; hybrid quantization; image classification; image coding; image reconstruction; image segmentation; information masking; mean square error; progressive image refinement; progressive image transmission; receiver; region growing technique; scalar quantization; side information; simulation results; subjective criteria; transform domain; variable block size coding; vector quantization; Block codes; Discrete cosine transforms; Image coding; Image communication; Image reconstruction; Image segmentation; Mean square error methods; Pixel; Transform coding; Vector quantization;
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
ISSN
1051-8215
Type
jour
DOI
10.1109/76.544739
Filename
544739
Link To Document