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Rate Distortion Optimization for H.264 Interframe Coding: A General Framework and Algorithms

机译:H.264帧间编码的速率失真优化:通用框架和算法

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Rate distortion (RD) optimization for H.264 interframe coding with complete baseline decoding compatibility is investigated on a frame basis. Using soft decision quantization (SDQ) rather than the standard hard decision quantization, we first establish a general framework in which motion estimation, quantization, and entropy coding (in H.264) for the current frame can be jointly designed to minimize a true RD cost given previously coded reference frames. We then propose three RD optimization algorithmsa graph-based algorithm for near optimal SDQ in H.264 baseline encoding given motion estimation and quantization step sizes, an algorithm for near optimal residual coding in H.264 baseline encoding given motion estimation, and an iterative overall algorithm to optimize H.264 baseline encoding for each individual frame given previously coded reference frameswith them embedded in the indicated order. The graph-based algorithm for near optimal SDQ is the core; given motion estimation and quantization step sizes, it is guaranteed to perform optimal SDQ if the weak adjacent block dependency utilized in the context adaptive variable length coding of H.264 is ignored for optimization. The proposed algorithms have been implemented based on the reference encoder JM82 of H.264 with complete compatibility to the baseline profile. Experiments show that for a set of typical video testing sequences, the graph-based algorithm for near optimal SDQ, the algorithm for near optimal residual coding, and the overall algorithm achieve on average, 6%, 8%, and 12%, respectively, rate reduction at the same PSNR (ranging from 30 to 38 dB) when compared with the RD optimization method implemented in the H.264 reference software.
机译:基于帧研究了具有完全基线解码兼容性的H.264帧间编码的速率失真(RD)优化。我们首先使用软判决量化(SDQ)而不是标准硬判决量化,建立一个通用框架,在该框架中,可以共同设计当前帧的运动估计,量化和熵编码(在H.264中),以最大程度地减少真实RD给定先前编码的参考帧的成本。然后,我们提出了三种RD优化算法:一种是基于图的算法,用于在给定运动估计和量化步长的情况下在H.264基线编码中实现近乎最佳的SDQ;一种在接近H.264基线编码的情况下,基于给定运动估计并具有最佳迭代的算法在给定先前编码的参考帧的情况下,针对每个单独的帧优化H.264基线编码的算法,并将它们以指示的顺序嵌入。基于图的接近最佳SDQ的算法是核心。在给定的运动估计和量化步长的情况下,如果为优化而忽略了H.264的上下文自适应可变长度编码中使用的弱相邻块依赖性,则可以确保执行最佳SDQ。所提出的算法已基于H.264的参考编码器JM82实现,并且与基线配置文件完全兼容。实验表明,对于一组典型的视频测试序列,接近最优SDQ的基于图的算法,接近最优残差编码的算法以及总体算法的平均利用率分别为6%,8%和12%与H.264参考软件中实现的RD优化方法相比,在相同的PSNR(范围为30至38 dB)下,速率降低。

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