Title :
A Bayesian approach for the estimation and transmission of regularization parameters for reducing blocking artifacts
Author :
Mateos, Javier ; Katsaggelos, Aggelos K. ; Molina, Rafael
Author_Institution :
Dept. de Ciencias de la Comput. e Inteligencia Artificial, Granada Univ., Spain
fDate :
7/1/2000 12:00:00 AM
Abstract :
With block-based compression approaches for both still images and sequences of images annoying blocking artifacts are exhibited, primarily at high compression ratios. They are due to the independent processing (quantization) of the block transformed values of the intensity or the displaced frame difference. We propose the application of the hierarchical Bayesian paradigm to the reconstruction of block discrete cosine transform (BDCT) compressed images and the estimation of the required parameters. We derive expressions for the iterative evaluation of these parameters applying the evidence analysis within the hierarchical Bayesian paradigm. The proposed method allows for the combination of parameters estimated at the coder and decoder. The performance of the proposed algorithms is demonstrated experimentally
Keywords :
Bayes methods; data compression; decoding; discrete cosine transforms; image coding; image reconstruction; image sequences; iterative methods; parameter estimation; BDCT compressed images; Bayesian approach; algorithms performance; block discrete cosine transform; block transformed values; block-based compression; blocking artifacts reduction; coder; decoder; displaced frame difference; evidence analysis; experimental results; hierarchical Bayesian paradigm; high compression ratios; hyperparameters; image reconstruction; image sequences; iterative evaluation; quantization; regularization parameters estimation; regularization parameters transmission; still images; Bayesian methods; Discrete cosine transforms; Filtering; Image coding; Image reconstruction; Iterative algorithms; Iterative decoding; Parameter estimation; Quantization; Signal processing algorithms;
Journal_Title :
Image Processing, IEEE Transactions on