缓冲约束的R-D优化视频编码速率控制

Lifeng Zhao, C.-C. Jay Kuo
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引用次数: 5

摘要

本文研究了基于缓冲约束的R-D优化视频编码速率控制。首先基于速率(R)和非零(NZ)系数之间的关系模型提出了帧级位分配。在建立R-NZ关系模型的基础上,提出了一种质量反馈方案,以生成符合视频缓冲验证器(VBV)要求且保证视频质量的比特流。然后,通过对I、B、P图像中宏块的量化参数和编码方式进行联合选择,提出了一种R-D优化的宏块级速率控制方法,适用于逐行和隔行视频。为了避免不规则的大MV或单个孤立系数,我们扩展了MB的编码模式集,增加了零MV和零纹理位作为两个候选。最后,提出了快速启发式算法来降低R-D数据生成的计算复杂度,并提出了R-D优化中的Viterbi算法(VA),以较低的计算成本获得接近最优的编码结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Buffer-constrained R-D optimized rate control for video coding
Buffer-constrained R-D optimized rate control for video coding is investigated in this work. A frame level bit allocation is first presented based on a model of the relationship between the rate (R) and nonzero (NZ) coefficients. With the modelled R-NZ relationship, a quality feedback scheme is proposed to generate VBV (video buffer verifier) compliant bitstream with assured video quality. Then, a R-D optimized macroblock level rate control is described by jointly selecting the quantization parameter and the coding mode of macroblocks in I, B and P pictures for both progressive and interlaced video. To avoid the irregularly large MV or one single isolated coefficient, we extend the set of coding modes of MB by including zero MV and zero texture bits as two more candidates. Finally, fast heuristics are developed to reduce the computational complexity of R-D data generation and the Viterbi algorithm (VA) in R-D optimization, which achieves coding results close to the optimal one at a much lower computational cost.
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