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A Low-Complexity Bit-Plane Entropy Coding and Rate Control for 3-D DWT Based Video Coding
DOI:10.1109/TMM.2013.2269315.png)
Abstract
En 中文
This paper is dedicated to fast video coding based on three-dimensional discrete wavelet transform. First, we propose a novel low-complexity bit-plane entropy coding of wavelet subbands based on Levenstein zero-run coder for low entropy contexts and adaptive binary range coder for other contexts. Second, we propose a rate-distortion efficient criterion for skipping 2-D wavelet transforms and entropy encoding based on parent-child subband tree. Finally, we propose one pass rate control which uses virtual buffer concept for adaptive Lagrange multiplier selection. Simulations results show that the proposed video codec has a much lower computational complexity (from 2 to 6 times) for the same quality level compared to the H. 264/AVC standard in the low complexity mode.
Keywords:
Entropy coding
rate control
3-D DWT.
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