Title :
Multi-scale, Perceptual and Vector Quanitzation Based Video Codec
Author :
Zadeh, P. Bagheri ; Buggy, Tom ; Akbari, Akbar Sheikh
Author_Institution :
Glasgow Caledonian Univ., Glasgow
Abstract :
This paper presents a novel hybrid multi-scale, perceptual and vector quantization based video coding scheme. In intra mode of operation, a wavelet transform is applied to the input frame and decorrelate it into a number of subbands. The lowest frequency subband is losslessly coded. The coefficient of the high frequency subbands are pixel quantized using perceptual weights, which specifically designed for each high frequency subband. The quantized coefficients are then coded using quadtree-coding scheme. In the inter mode of operation, displaced frame difference is generated using overlapped block motion estimation/compensation to exploit the inter-frame redundancy. A wavelet transform is then applied to the displaced frame difference to decorrelate it into a number of subbands. The coefficients in the resulting subbands are coded using an adaptive vector quantization scheme. To evaluate the performance of the proposed codec, the proposed codec and the adaptive subband vector quantization coding scheme (ASVQ), which has been shown outperforms H.263 at all bitrates, were applied to a number of test sequences. Results indicate that the proposed codec outperforms ASVQ subjectively and objectively at all bit rates.
Keywords :
motion compensation; motion estimation; quadtrees; vector quantisation; video codecs; video coding; wavelet transforms; ASVQ; adaptive subband vector quantization coding scheme; adaptive vector quantization scheme; displaced frame difference; overlapped block motion compensation; overlapped block motion estimation; perceptual weights; quadtree-coding scheme; vector quantization based video codec; vector quantization based video coding scheme; wavelet transform; Bit rate; Decorrelation; Design for disassembly; Frequency; Motion estimation; Vector quantization; Video codecs; Video coding; Video compression; Wavelet transforms;
Conference_Titel :
Digital Telecommunications, 2007. ICDT '07. Second International Conference on
Conference_Location :
San Jose, CA
Print_ISBN :
0-7695-2910-0
Electronic_ISBN :
0-7695-2910-0
DOI :
10.1109/ICDT.2007.24