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Novel Statistical Modeling, Analysis and Implementation of Rate-Distortion Estimation for H.264/AVC Coders

机译:H.264 / AVC编码器的新型统计建模,速率失真估计的分析和实现

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In H.264/advanced video coding, the encoder employs the rate-distortion optimization (RDO) to select the optimal coding mode of each block. Although it is effective to employ the RDO technique for mode decision, the computation load increases drastically. To reduce the computation complexity of the RDO technique, in this paper, we propose efficient algorithms for the estimation of block-level rate and distortion. For rate estimation, we model the transform coefficients with accurate generalized Gaussian distributions, and the weighted sum of absolute quantized transform coefficients is proposed as an efficient rate estimator, where the weights provide an implicit mechanism for evaluating different contributions of different frequency components to the coding bits. For distortion estimation, we first analyze the origins of distortion thoroughly. Then a direct relationship between the discarded bits in quantization and the distortion is explored. According to this investigation, a simple and efficient algorithm is proposed for the distortion estimation. With above proposed algorithms, the RDO technique can be efficiently implemented in a low-complexity way. Extensive experimental results demonstrate that, compared with the original RDO implementation, the proposed algorithms achieve about 32% reduced total encoding time with ignorable coding performance degradation.
机译:在H.264 /高级视频编码中,编码器采用速率失真优化(RDO)选择每个块的最佳编码模式。尽管将RDO技术用于模式确定是有效的,但是计算量却急剧增加。为了降低RDO技术的计算复杂度,在本文中,我们提出了用于估计块级速率和失真的有效算法。对于速率估计,我们使用精确的广义高斯分布对变换系数建模,并提出了绝对量化的变换系数的加权和作为有效的速率估计器,其中权重提供了一种隐式机制,用于评估不同频率分量对编码的不同贡献位。对于失真估计,我们首先彻底分析失真的起源。然后,探讨了量化中的丢弃比特与失真之间的直接关系。根据这项研究,提出了一种简单有效的失真估计算法。利用以上提出的算法,可以以低复杂度的方式有效地实现RDO技术。大量的实验结果表明,与原始的RDO实现相比,所提出的算法可将总编码时间减少约32%,并且编码性能会明显下降。

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