DocumentCode
2338354
Title
Color image compression scheme based upon human vision properties
Author
Laligant, O. ; Joanne, B. ; Truchetet, F.
Author_Institution
Lab. LE21, Bourgogne Univ., Le Creusot, France
fYear
1997
fDate
20-20 June 1997
Firstpage
26
Abstract
Summary form only given. We consider the compression of a still color image with very low distortion from the human eye point of view. The basic idea in this work is to take into account the variations of human eye/brain spatial resolution with color. The most natural way for an image processing researcher to perform such a scheme is to use a multiresolution analysis of the image to be coded before quantization and coding. Previous experiences connected with still grey value image compression/decompression scheme design have shown that the wavelet transform, Mallats algorithm, is a very efficient method for this purpose, particularly if real time implementation is under consideration, Hence we present a wavelet transform algorithm for a color image and we show how and with what performances the transformed image can be altered and reduced. We show that a quasi lossless compression/decompression scheme can be easily obtained with compression ratio up to 1:10. The results obtained after a large series of tests based on psychovisual estimations rather than on pure PSNR evaluation are in good accordance with the assumed properties of the human visual perceptive system.
Keywords
data compression; image coding; image colour analysis; visual perception; wavelet transforms; Mallats algorithm; color image compression scheme; human eye/brain spatial resolution variation; human vision properties; low distortion; multiresolution analysis; psychovisual estimations; quasi lossless compression/decompression scheme; still color image; wavelet transform; Algorithm design and analysis; Color; Humans; Image coding; Image processing; Multiresolution analysis; Quantization; Spatial resolution; System testing; Wavelet transforms;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Intelligent Mechatronics '97. Final Program and Abstracts., IEEE/ASME International Conference on
Conference_Location
Tokyo, Japan
Print_ISBN
0-7803-4080-9
Type
conf
DOI
10.1109/AIM.1997.652884
Filename
652884
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