Title :
Speeding-up Fractal Color Image Compression Using Moments Features Based on Symmetry Predictor
Author :
George, Loay E. ; Al-Hilo, Eman A.
Author_Institution :
Coll. of Sci., Baghdad Univ., Baghdad, Iraq
Abstract :
In this research, fractal compression technique using moment features based on the zero-mean range where improved by adding symmetry predictor to reduce the number of isometric trails from 8 to one trail. The first order centralized moments are used to index each domain and range blocks onto one of eight possible isometric states. At each range domain the indices of both domain and range blocks are passed through the predictor, then the predictor outputs the index of the required isometric transform (that needed to be applied on the domain block) to get the best possible match between the domain and range blocks. The moment features have been used to speed up the Iterated Function System (IFS) matching stage. These features are used to determine the block descriptor "moment\´s ratio index", which in turn is utilized to classify the image blocks in both domain and range pools. During the encoding stage the block moment ratio descriptor of each range blocks is used to filter the domain blocks and keep only those blocks whose moment descriptor is suitable to be IFS matched with the tested range block. The test results showed a lower encoding time (0.16) sec with appropriate PSNR. The time of speeding is about (99.9%) in comparison with that for traditional method.
Keywords :
fractals; image coding; image colour analysis; image matching; iterative methods; transforms; IFS matching stage; PSNR; block descriptor; block moment ratio descriptor; domain blocks; encoding stage; encoding time; first order centralized moments; fractal compression technique; image blocks; isometric states; isometric trails; isometric transform; iterated function system matching stage; moments features; moments ratio index; range blocks; range domain; speeding-up fractal color image compression; symmetry predictor; zero-mean range; Equations; Image coding; Indexes; Mathematical model; PSNR; Thin film transistors; Transforms; Fractal Image Compression; Image Compression; Isometric Process; Moments Features;
Conference_Titel :
Information Technology: New Generations (ITNG), 2011 Eighth International Conference on
Conference_Location :
Las Vegas, NV
Print_ISBN :
978-1-61284-427-5
Electronic_ISBN :
978-0-7695-4367-3
DOI :
10.1109/ITNG.2011.94