DocumentCode
2123246
Title
Three dimensional subband video analysis and synthesis with adaptive clustering in high frequency subbands
Author
Luo, Jiebo ; Chen, Chang Wen ; Parker, Kevin J. ; Huang, Thomas S.
Author_Institution
Dept. of Electr. Eng., Rochester Univ., NY, USA
Volume
3
fYear
1994
fDate
13-16 Nov 1994
Firstpage
255
Abstract
This paper presents a hybrid analysis and synthesis scheme for video coding aimed at developing a video communication system that can consistently transmit high quality video signals with high compression ratios. The scheme is based on a 3D subband decomposition of video signal. To best take advantage of the characteristics of high frequency subbands, an adaptive clustering algorithm with Gibbs random field model is applied to the high frequency subbands to achieve an adaptive quantization with spatial constraints. The adaptive quantization reduces significantly the activity of high frequency bands and makes the entire scheme amenable to efficient video coding. The resultant reconstruction noise can be suppressed using again a Gibbs random field based algorithm. Preliminary results have shown the potential of this methods over existing methods
Keywords
adaptive signal processing; quantisation (signal); video coding; 3D subband decomposition; Gibbs random field model; adaptive clustering; adaptive clustering algorithm; adaptive quantization; high compression ratios; high frequency bands; high frequency subbands; high quality video signals; reconstruction noise; spatial constraints; synthesis scheme; three dimensional subband video analysis; video coding; video communication system; Bit rate; Discrete cosine transforms; Frequency synthesizers; ISDN; Motion estimation; Signal analysis; Signal synthesis; Teleconferencing; Video coding; Video compression;
fLanguage
English
Publisher
ieee
Conference_Titel
Image Processing, 1994. Proceedings. ICIP-94., IEEE International Conference
Conference_Location
Austin, TX
Print_ISBN
0-8186-6952-7
Type
conf
DOI
10.1109/ICIP.1994.413848
Filename
413848
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