DocumentCode
1384576
Title
Modeling of subband image data for buffer control
Author
Calvagno, G. ; Ghirardi, C. ; Mian, G.A. ; Rinaldo, R.
Author_Institution
Dipt. di Elettronica e Inf., Padova Univ., Italy
Volume
7
Issue
2
fYear
1997
fDate
4/1/1997 12:00:00 AM
Firstpage
402
Lastpage
408
Abstract
We develop an adaptive scheme for quantization of subband or transform coded frames in a typical video sequence coder. Using a generalized Gaussian model for the subband or transform coefficients, we present a procedure to determine the optimum dead-zone quantizer for a given entropy of the quantizer output symbols. We find that, at low bit rates, the dead-zone quantizer offers better performance than the uniform quantizer. The model is used to develop an adaptive procedure to update the quantizer parameters on the basis of the state of a channel buffer with constant output rate and variable input rate. We compare the accuracy of the generalized Gaussian model in predicting the actual bit rate to that achievable using the simpler and more common Laplacian model. Experimental results show that the generalized Gaussian model has superior performance than the Laplacian model, and that it can be effectively used in a practical scheme for buffer control
Keywords
Gaussian processes; adaptive signal processing; buffer storage; channel capacity; discrete cosine transforms; entropy; image sequences; quantisation (signal); statistical analysis; telecommunication control; transform coding; video coding; DCT; Laplacian model; adaptive procedure; adaptive scheme; bit rate prediction; buffer control; channel buffer state; constant output rate; entropy; experimental results; generalized Gaussian model; low bit rates; optimum dead-zone quantizer; quantization; quantizer output symbols; quantizer parameters updating; subband coefficients; subband image data modeling; transform coded frames; transform coefficient; uniform quantizer; variable input rate; video sequence coder; Bit rate; Discrete cosine transforms; Entropy; Image coding; Laplace equations; Predictive models; Pulse modulation; Quantization; Transform coding; Video sequences;
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
ISSN
1051-8215
Type
jour
DOI
10.1109/76.564117
Filename
564117
Link To Document