DocumentCode :
3700152
Title :
An L1/2-norm based efficient block level rate estimation model for HEVC
Author :
Yang Li; Xuanqin Mou; Chao Wang
Author_Institution :
Institute of Image Processing and Pattern Recognition, Xi´an Jiaotong University, China
fYear :
2015
Firstpage :
1
Lastpage :
6
Abstract :
In this paper, we propose a block level rate estimation model for HEVC in discrete cosine transformation (DCT) domain, to reduce the computation burden of entropy coding in mode decision. Rather than the widely used ℓ0 and ℓ1-norm, the proposed model is based on the root of ℓ1/2-norm of the quantized DCT coefficients (r-qCoeffs) which presents a higher estimation accuracy. Furthermore, to adapt to the tree partition structured coding units in HEVC, weight matrixes of r-qCoeffs are developed for different sized transform units, where each weight is a precalculated linear function of quantization parameter (QP). Benefit from the proposed model, no parameter updating is required and high accuracy can be achieved. Experimental results show that compared with the HEVC reference software, 10.68% and 5.03% encoding time can be saved in average for intra and inter prediction mode respectively, with little rate-distortion performance loss. Besides, the proposed model that possesses a concise linear form of QP is quite qualified for the rate control mode. Results show that comparable performance to constant QP encoding mode can be achieved.
Keywords :
"Estimation","Discrete cosine transforms","Computational modeling","Entropy coding","Adaptation models","Quantization (signal)","Linearity"
Publisher :
ieee
Conference_Titel :
Multimedia Signal Processing (MMSP), 2015 IEEE 17th International Workshop on
Type :
conf
DOI :
10.1109/MMSP.2015.7340828
Filename :
7340828
Link To Document :
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