DocumentCode
589880
Title
Hybrid scheme for lifting based image coding
Author
Abd-elhafiez, W.M. ; Mofaddel, M.A.
Author_Institution
Dept. of Math. & Comput. Sci., Sohag Univ., Sohag, Egypt
fYear
2012
fDate
27-29 Nov. 2012
Firstpage
141
Lastpage
146
Abstract
This paper describes an efficient lifting based hybrid image coding (LB-HIC) scheme. The proposed scheme is based on using the lifting transform (LT) in conjunction with the discrete cosine transform (DCT) to provide coding performance superior to the popular image coders. The proposed method uses combination of the DCT coding and the high performance of the set partitioning in hierarchical tree (SPIHT) coding. The subband image data in the lifting domain is modified based on the DCT and the object classification of the coefficient in the low-frequency image subband (LL). The modification process provides a new subband image data containing almost the same information of the original one but having smaller values of the lifting coefficients. Simulation results of the proposed method demonstrate that, with small addition in the computational complexity of the coding process, the peak signal-to-noise ratio (PSNR) performance of the proposed algorithm is much higher than that of the SPIHT test coder and some of famous image coding techniques.
Keywords
computational complexity; discrete cosine transforms; image classification; image coding; DCT; DCT coding; LB-HIC scheme; LT; PSNR performance; SPIHT coding; coding performance; computational complexity; discrete cosine transform; lifting based hybrid image coding; lifting transform; low-frequency image subband; object classification; peak signal-to-noise ratio; set partitioning in hierarchical tree; Decision support systems; DCT; Embedded Coding; Image Coding; Image Compression; JPEG 2000; Lifting Transform; SPIHT;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Engineering & Systems (ICCES), 2012 Seventh International Conference on
Conference_Location
Cairo
Print_ISBN
978-1-4673-2960-6
Type
conf
DOI
10.1109/ICCES.2012.6408500
Filename
6408500
Link To Document