DocumentCode :
2900423
Title :
Bit allocation algorithm for wavelet image compression
Author :
Terki, N. ; Doghmane, N. ; Terki, A.
Author_Institution :
Dept. of Electron., Annaba Univ., Algeria
fYear :
2002
fDate :
2002
Firstpage :
339
Lastpage :
344
Abstract :
We introduce a compression algorithm using the wavelet transform. The principle of wavelet transform is to decompose hierarchically the input image into a series of successively lower resolution reference images and detail images that contain the information needed to be reconstructed back to the next higher resolution level. The histogram of image sub-bands provides information on the distribution of the coefficient values in this sub image. The sub band images resulting from wavelet transform are not equal significance. Some sub-bands contain more information than others. The total number of available bits describe an image is however, inevitably limited. Therefore, it is desirable to allocate more bits to those sub-band images and can be coded more accurately than others. The objective of such bit allocation method is to optimize the overall coder performance and minimize the quantization error. In determining which wavelet filter is to be used for image compression, some of the properties including vanishing moments are considered. The wavelet transform is implemented using a linear-phase biorthogonal filter (16,4) with 4 level of decomposition. For this study, we used a scalar quantization with uniform threshold quantizers. The quantization method is pulse code modulation (PCM) for the coefficients in all high-pass sub-bands. The coefficients of low-pass sub-band are differential PCM quantized per region.
Keywords :
data compression; filtering theory; image coding; pulse code modulation; quantisation (signal); wavelet transforms; Daubechies filters; biorthogonal wavelet; bit allocation; bit allocation algorithm; image compression; image subbands; pulse code modulation; threshold quantization; vanishing moments; Bit rate; Compression algorithms; Filters; Image coding; Image reconstruction; Image resolution; Phase change materials; Pulse modulation; Quantization; Wavelet transforms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Control, 2002. Proceedings of the 2002 IEEE International Symposium on
ISSN :
2158-9860
Print_ISBN :
0-7803-7620-X
Type :
conf
DOI :
10.1109/ISIC.2002.1157786
Filename :
1157786
Link To Document :
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