Title :
A Binary Image Scalable Coder Based on Reversible Cellular Automata Transform and Arithmetic Coding
Author :
Milani, Simone ; Cruz-Reyes, Carlos ; Kari, Jarkko ; Calvagno, Giancarlo
Author_Institution :
Dept. of Inf. Eng., Univ. of Padova, Padova
Abstract :
In this work, we have designed an efficient arithmetic coder for the non-linear bi-level image coder based on reversible cellular automata transform reported in the work of Cruz-Reyes and Kari (2008). The proposed approach relies on non-linear transform operations based on RmbCA, decomposing the image into four subimages (named LL, LH, HL, HH in lexicographic order) in such a way that the LL subimage represents a low resolution version of the original image. Performing an edge detection on this subimage, it is possible to identify the coordinates where there is a high probability that the other subimages present a black pixels. In this way it is possible to minimize the amount of data that have to be processed reducing the coded bit stream. In order to increase the probability that black pixels lie in the selected region, the coding algorithm enlarges the identified region according to the values of Sobel operators computed on the LL subimage.
Keywords :
arithmetic codes; binary codes; cellular automata; edge detection; image coding; image resolution; nonlinear codes; probability; transforms; LL subimage; RmbCA; Sobel operator; arithmetic coding; binary image scalable coder; coded bit stream; coding algorithm; edge detection; image resolution; nonlinear bi-level image coder; nonlinear transform; probability; reversible cellular automata transform; Arithmetic; Code standards; Data compression; Data engineering; Image coding; Image edge detection; Image resolution; Mathematics; Shape; Streaming media; Cellular Automata; JBIG; arithmetic coding; bi-level images; image compression; scalable coding;
Conference_Titel :
Data Compression Conference, 2009. DCC '09.
Conference_Location :
Snowbird, UT
Print_ISBN :
978-1-4244-3753-5
DOI :
10.1109/DCC.2009.59