DocumentCode
1306301
Title
Three-sided side match finite-state vector quantization
Author
Wei, Hsien-Chung ; Tsai, Pao-Chin ; Wang, Jia-Shung
Author_Institution
Dept. of Comput. Sci., Nat. Tsing Hua Univ., Hsinchu, Taiwan
Volume
10
Issue
1
fYear
2000
fDate
2/1/2000 12:00:00 AM
Firstpage
51
Lastpage
58
Abstract
Several low bit-rate still-image compression methods have been presented, such as SPHIT, hybrid VQ, and the Wu-Chen (see Proc. IEEE ICASSP, 1997) method. In particular, the image “Lena” can be compressed using less than 0.15 bpp at 31.4 dB or higher. These methods exercise the analysis techniques (wavelet or subband) before distributing the bit rate to each piece of an image, thus the dilemma between bit rate and distortion can be solved. In this paper, we propose a simple but comparable method that adopts the technique of side match VQ only. The side match vector quantization (SMVQ) is an effective VQ coding scheme at low bit-rate. The conventional side match (two-sided) VQ utilizes the codeword information of two neighboring blocks to predict the state codebook of an input vector. We propose a hierarchical three-sided side match finite-state vector quantization (HTSMVQ) method that can: (1) make the state codebook size as small as possible-the size is reduced to one if the prediction can perform perfectly; (2) improve the prediction quality for edge blocks; and (3) regularly refresh the codewords to alleviate the error propagation of side match. In the simulation results, the image “Lena” can be coded with a PSNR 34.682 dB at 0.25 bpp. It is better than SPIHT, EZW, FSSQ and hybrid VQ with 34.1, 33.17, 33.1, and 33.7 dB, respectively. At a bit rate lower than 0.15 bpp, only the enhanced version of EZW performs better than our method, at about 0.14 dB
Keywords
Huffman codes; data compression; entropy codes; image coding; image matching; vector quantisation; Huffman coding; PSNR; SMVQ; SPHIT; VQ coding; Wu-Chen method; analysis techniques; bit rate distribution; codewords refreshing; distortion; edge blocks; entropy coding; error propagation; hybrid VQ; image compression; index grouping algorithm; input vector; low bit-rate; low bit-rate still-image compression; prediction quality; side match vector quantization; simulation results; state codebook; state codebook size; subband analysis; three-sided side match finite-state VQ; wavelet analysis; Bit rate; Clustering algorithms; Image analysis; Image coding; Image reconstruction; Iterative algorithms; PSNR; Partitioning algorithms; Rate distortion theory; Vector quantization;
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
ISSN
1051-8215
Type
jour
DOI
10.1109/76.825858
Filename
825858
Link To Document