DocumentCode
315878
Title
Very low bit rate video codec using variable blocksize entropy-constrained residual vector quantization
Author
Kwon, Heesung ; Venkatraman, Mahesh ; Nasrabadi, Nasser M.
Author_Institution
State Univ. of New York, Buffalo, NY, USA
Volume
2
fYear
1997
fDate
9-12 Jun 1997
Firstpage
1460
Abstract
In this paper we study coding of video sequences at very low bitrates using an entropy-constrained variable block size residual vector quantizer. For a given complexity, it is well understood that structured vector quantizers perform better than unstructured and unconstrained vector quantizers. A combination of structured vector quantizers is used in this paper to encode the video sequences. The proposed codec uses a Discrete Cosine Transform (DCT) based transform vector quantizer and a variable-rate residual vector quantizer in cascade. The transform-VQ captures the low-frequency information using only a small portion of the bit-budget, while the later stage residual VQ captures the high-frequency information using the remaining bits. A strategy to adaptively refine only areas of high activity using recursive decomposition and selective refinement is used in the later stages. An entropy constraint is used to modify the codebooks to allow better entropy coding of the indices. Performance of the proposed codec is evaluated and compared with the H.263 based codec. Experimental results show not only better quantitative performance but also significantly better perceptual quality
Keywords
discrete cosine transforms; entropy codes; image sequences; vector quantisation; video codecs; video coding; bit rate; discrete cosine transform; entropy coding; entropy-constrained residual vector quantization; high-frequency information; low-frequency information; perceptual quality; recursive decomposition; selective refinement; video codec; video sequence coding; Bit rate; Channel capacity; Discrete cosine transforms; Entropy coding; Image coding; Quantization; Transform coding; Video codecs; Video compression; Video sequences;
fLanguage
English
Publisher
ieee
Conference_Titel
Circuits and Systems, 1997. ISCAS '97., Proceedings of 1997 IEEE International Symposium on
Print_ISBN
0-7803-3583-X
Type
conf
DOI
10.1109/ISCAS.1997.622193
Filename
622193
Link To Document