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Fast entropy-based CABAC rate estimation for mode decision in HEVC

机译:基于熵的快速CABAC速率估计用于HEVC中的模式决策

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摘要

High efficiency video coding (HEVC) seeks the best code tree configuration, the best prediction unit division and the prediction mode, by evaluating the rate-distortion functional in a recursive way and using a “try all and select the best” strategy. Further, HEVC only supports context adaptive binary arithmetic coding (CABAC), which has the disadvantage of being highly sequential and having strong data dependencies, as the entropy coder. So, the development of a fast rate estimation algorithm for CABAC-based coding has a great practical significance for mode decision in HEVC. There are three elementary steps in CABAC encoding process: binarization, context modeling, and binary arithmetic coding. Typical approaches to fast CABAC rate estimation simplify or eliminate the last two steps, but leave the binarization step unchanged. To maximize the reduction of computational complexity, we propose a fast entropy-based CABAC rate estimator in this paper. It eliminates not only the modeling and the coding steps, but also the binarization step. Experimental results demonstrate that the proposed estimator is able to reduce the computational complexity of the mode decision in HEVC by 9–23 % with negligible PSNR loss and BD-rate increment, and therefore exhibits applicability to practical HEVC encoder implementation.
机译:高效视频编码(HEVC)通过递归评估速率失真功能并使用“尝试并选择最佳”策略来寻求最佳的代码树配置,最佳的预测单位划分和预测模式。此外,HEVC仅支持上下文自适应二进制算术编码(CABAC),其具有作为熵编码器的高度顺序和具有强数据依赖性的缺点。因此,基于CABAC编码的快速码率估计算法的开发对于HEVC模式决策具有重要的现实意义。 CABAC编码过程包含三个基本步骤:二值化,上下文建模和二进制算术编码。快速CABAC速率估计的典型方法简化或消除了最后两个步骤,但保持二值化步骤不变。为了最大程度地减少计算复杂度,我们在本文中提出了一种基于熵的快速CABAC速率估计器。它不仅消除了建模和编码步骤,而且消除了二值化步骤。实验结果表明,提出的估计器能够将HEVC模式决策的计算复杂度降低9–23%,而PSNR损失和BD速率增量可忽略不计,因此对实际的HEVC编码器实现具有适用性。

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