Rate control for HEVC based on spatio-temporal context and motion complexity

被引:0
作者
Yonghong Hou
Yilin Ye
Jianjun Lei
Wei Xiang
Yao Guo
Bo Cui
机构
[1] Tianjin University,School of Electronic Information Engineering
[2] University of Southern Queensland,School of Mechanical and Electrical Engineering
来源
Multimedia Tools and Applications | 2017年 / 76卷
关键词
Rate control; −; model; Spatio-temporal context; Motion complexity;
D O I
暂无
中图分类号
学科分类号
摘要
Rate control plays a crucial role in video coding. Existing rate control methods for high efficiency video coding standard (HEVC) hardly take advantage of spatio-temporal context information when updating model parameters, resulting in inaccurate computation of the Lagrange multiplier and quantization parameter (QP). Meanwhile, these methods fail to consider the motion complexity of a basic unit (BU). Therefore, a large mismatch may exist between the allocated bits and actually encoded bits. In this paper, we propose an effective rate control scheme for HEVC at the BU layer to exploit both the spatio-temporal context and motion complexity. Firstly, the actually used Lagrange multiplier and generated bits of the highly correlated coded BUs in the spatio-temporal context are carefully weighted to update the model parameters. Secondly, the allocated bits for a BU are adjusted based on its motion complexity. Thus, an improved Lagrange multiplier is more accurate in minimizing the difference between the target bits and actually generated bits. Experimental results show that our proposed method outperforms the current scheme in HM with negligible complexity increase.
引用
收藏
页码:14035 / 14053
页数:18
相关论文
共 68 条
[1]  
Chiang T(1997)A new rate control scheme using quadratic rate distortion model IEEE Trans Circuits Syst Video Technol 7 287-311
[2]  
Zhang Y(2013)Pixel-wise unified rate-quantization model for multi-level rate control IEEE J Sel Top Sign Proces 7 1112-1123
[3]  
Choi H(2002)Optimum bit allocation and accurate rate control for video coding via ρ-domain source modeling IEEE Trans Circuits Syst Video Technol 12 840-849
[4]  
Yoo J(2005)On enhancing H.264/AVC video rate control by PSNR-based frame complexity estimation IEEE Trans Consum Electron 51 281-286
[5]  
Nam J(2005)Frame bit allocation for H.264/AVC video coder via Cauchy density-based rate and distortion models IEEE Trans Circuits Syst Video Technol 15 994-1006
[6]  
Sim D(2012)Block partitioning structure in the HEVC Standard IEEE Trans Circuits Syst Video Technol 22 1697-1706
[7]  
Ivan VB(2007)Rate control for H.264 video with enhanced rate and distortion models IEEE Trans Circuits Syst Video Technol 17 517-529
[8]  
He Z(2014)A frame-level rate control scheme based on texture and non-texture rate models for High Efficiency Video Coding IEEE Trans on Circuits and Syst Video Tech 24 465-479
[9]  
Mitra S(2014)λ domain based rate control for High Efficiency Video Coding IEEE Trans Image Process 23 3841-3854
[10]  
Jiang M(2005)Rate-distortion analysis for H.264/AVC video coding and its application to rate control IEEE Trans Circuits Syst Video Technol 15 1533-1544