DocumentCode
772452
Title
Efficient Encoding of Colored Pictures in R, G, B Components
Author
Yamaguchi, Hirohisa
Author_Institution
KDD Company, Ltd., Tokyo, Japan
Volume
32
Issue
11
fYear
1984
fDate
11/1/1984 12:00:00 AM
Firstpage
1201
Lastpage
1209
Abstract
The encoding of colored pictures in components has attracted a lot of attention. In this paper, for their efficient transmission in the 2-3 bit/pel range, the direct encoding of the red (
), green (
), and blue (
) primaries is investigated. Differential PCM with vector quantization is used and the encoding efficiencies are compared to the similar result obtained using the properly converted luminance (
) and chrominance (
) component signals. A new quantization scheme is proposed for
encoding to improve the picture quality. As a result, it is shown that
encoding can attain a comparable or slightly higher encoding efficiency as compared to
encoding, and a higher resolution can be obtained for strong color edges defined by the primary colors, but the resulting picture quality is much noisier; thus, it is better suited for such applications in which the edges of primary colors play important roles, such as in graphics materials. An adaptive vector quantization is introduced in order to apply the proposed
encoding scheme to a wider range of pictures. The quantity called activity is introduced, considering the form of the predictor used. The optimum adaptive scheme is derived and its effectiveness is verified through simulations.
), green (
), and blue (
) primaries is investigated. Differential PCM with vector quantization is used and the encoding efficiencies are compared to the similar result obtained using the properly converted luminance (
) and chrominance (
) component signals. A new quantization scheme is proposed for
encoding to improve the picture quality. As a result, it is shown that
encoding can attain a comparable or slightly higher encoding efficiency as compared to
encoding, and a higher resolution can be obtained for strong color edges defined by the primary colors, but the resulting picture quality is much noisier; thus, it is better suited for such applications in which the edges of primary colors play important roles, such as in graphics materials. An adaptive vector quantization is introduced in order to apply the proposed
encoding scheme to a wider range of pictures. The quantity called activity is introduced, considering the form of the predictor used. The optimum adaptive scheme is derived and its effectiveness is verified through simulations.Keywords
Differential pulse-code modulation; Image coding; Channel capacity; Colored noise; Encoding; Entropy; Graphics; Phase change materials; Redundancy; Signal resolution; TV; Vector quantization;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOM.1984.1095992
Filename
1095992
Link To Document