DocumentCode
1418878
Title
Interframe coding using two-stage variable block-size multiresolution motion estimation and wavelet decomposition
Author
Kim, Seongman ; Rhee, Seunghyeon ; Jeon, Jun Geun ; Park, Kyu Tae
Author_Institution
Dept. of Electron. Eng., Yonsei Univ., Seoul, South Korea
Volume
8
Issue
4
fYear
1998
fDate
8/1/1998 12:00:00 AM
Firstpage
399
Lastpage
410
Abstract
We propose a two-stage variable block-size multiresolution motion estimation (MRME) algorithm. In this algorithm, a method to reduce the amount of motion information is developed, and a bit allocation method minimizing the sum of the motion information and the prediction error is obtained in the wavelet transform domain. In the first stage of the proposed scheme, we utilize a set of wavelet components of the four subbands in the lowest resolution. These motion vectors are directly used as motion vectors for the lowest subband, and are scaled into the initial biases for other subbands at every layer of the wavelet pyramid. In the second stage, the bottom-up construction of a quadtree based on the merge operation is performed. The proposed scheme reduces the uncompressed bit rate of 8 bits/pixel into 0.212 bits/pixel at 41.1 dB of PSNR for the “Claire” sequence, which can be regarded as nearly an 11% reduction compared with the conventional method
Keywords
data compression; entropy; image resolution; image sequences; motion estimation; prediction theory; quadtrees; transform coding; video coding; wavelet transforms; PSNR; algorithm; bit allocation method; bottom-up construction; displaced frame difference; image sequence; interframe coding; merge operation; motion vectors; multiresolution motion estimation; prediction error; quadtree; subband; two-stage variable block-size; uncompressed bit rate reduction; video compression; wavelet decomposition; wavelet pyramid; wavelet transform domain; Bit rate; Discrete cosine transforms; Discrete wavelet transforms; Frequency; IEC standards; ISO standards; Image coding; Motion estimation; Signal resolution; Spatial resolution;
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
ISSN
1051-8215
Type
jour
DOI
10.1109/76.709407
Filename
709407
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