DocumentCode
1051410
Title
Least-Squares-Based Switching Structure for Lossless Image Coding
Author
Kau, Lih-Jen ; Lin, Yuan-Pei
Author_Institution
Nat. Chiao-Tung Univ., Hsinchu
Volume
54
Issue
7
fYear
2007
fDate
7/1/2007 12:00:00 AM
Firstpage
1529
Lastpage
1541
Abstract
Many coding methods are more efficient with some images than others. In particular, run-length coding is very useful for coding areas of little changes. Adaptive predictive coding achieves high coding efficiency for fast changing areas like edges. In this paper, we propose a switching coding scheme that will combine the advantages of both run-length and adaptive linear predictive coding. For pixels in slowly varying areas, run-length coding is used; otherwise least-squares (LS)-adaptive predictive coding is used. Instead of performing LS adaptation in a pixel-by-pixel manner, we adapt the predictor coefficients only when an edge is detected so that the computational complexity can be significantly reduced. For this, we use a simple yet effective edge detector using only causal pixels. This way, the proposed system can look ahead to determine if the coding pixel is around an edge and initiate the LS adaptation in advance to prevent the occurrence of a large prediction error. With the proposed switching structure, very good prediction results can be obtained in both slowly varying areas and pixels around boundaries. Furthermore, only causal pixels are used for estimating the coding pixels in the proposed encoder; no additional side information needs to be transmitted. Extensive experiments as well as comparisons to existing state-of-the-art predictors and coders will be given to demonstrate its usefulness.
Keywords
adaptive codes; image coding; least squares approximations; linear predictive coding; runlength codes; adaptive linear predictive coding; causal pixels; edge detector; least-squares-adaptive predictive coding; least-squares-based switching; lossless image coding; predictor coefficients; run-length coding; Bit rate; Computational complexity; Context modeling; Control engineering; Detectors; Entropy coding; Image coding; Image edge detection; Linear predictive coding; Predictive coding; Adaptive prediction; context modeling; edge detection; entropy coding; least-squares (LS) optimization; lossless image coding; run-length encodings;
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2007.899608
Filename
4268409
Link To Document