DocumentCode :
1573648
Title :
A Non-Iterative R-D Optimization Algorithm for Rate-Constraint Problems
Author :
Aminlou, Alireza ; Fatemi, O. ; Homayouni, Majid ; Hashemi, Mohammed R.
Author_Institution :
Multimedia Process. Lab., Tehran Univ., Iran
fYear :
2006
Firstpage :
2493
Lastpage :
2496
Abstract :
R-D optimization algorithm is frequently used where subband coding or vector quantization is required. All existing R-D optimization algorithms have an iterative process which results in more computational complexity and execution time. In this paper we propose a novel R-D optimization algorithm that has a non-iterative process with lower computational complexity. This algorithm is based on exponential modeling of R-D curves and can be used in rate-constraint problems. The proposed algorithm presents a good performance with non-convex curves as well as convex ones. While the execution time of the existing algorithms is O(Ncrv×Npt), the execution time of the proposed algorithm is O(Ncrv), where Ncrv is the number of curves and Npt is the average number of points in each curve. The quality degradation is 0.32 dB, in average, when it is tested in the rate control component of a JPEG2000 encoder.
Keywords :
computational complexity; data compression; iterative methods; optimisation; rate distortion theory; vector quantisation; video coding; JPEG2000 encoder; R-D optimization algorithm; computational complexity; iterative process; rate-distortion theory; subband coding; vector quantization; Communication system control; Computational complexity; Constraint optimization; Iterative algorithms; Lagrangian functions; Optimization methods; Testing; Transform coding; Vector quantization; Video compression; JPEG2000 rate control; R-D optimization algorithm; Rate constrained;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Image Processing, 2006 IEEE International Conference on
Conference_Location :
Atlanta, GA
ISSN :
1522-4880
Print_ISBN :
1-4244-0480-0
Type :
conf
DOI :
10.1109/ICIP.2006.312799
Filename :
4107074
Link To Document :
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