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Prediction unit depth selection based on statistic distribution for HEVC intra coding

机译:基于统计分布的HEVC帧内编码预测单元深度选择

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The new video coding standard, HEVC, achieves better compression performance relative to H.264 at the expense of a significant increase in computational complexity. It adopts coding tree structure, and implements partition and mode decision for each coding unit (CU) and prediction unit (PU). For intra coding, five levels of PUs from 64×64 to 4×4 should be searched and each PU selects one best mode from 35 candidate modes, which is very computation intensive. Therefore, reducing the number of levels for PUs, i.e., PU depth selection, is an efficient way to decrease intra coding complexity. In this paper, we fully investigate the relationship between the variances of different sizes of pixel blocks and the best partition of PUs. It is shown that 90th percentile of the variances distribution can be used to distinguish large PUs and small PUs. Furthermore, 16×16 PU search can be disabled for smooth area when variances of 64×64 pixel blocks are smaller than the 90th percentile of variances distribution of 64×64 PUs and this 90th percentile is smaller than an absolute threshold. Meanwhile, further split can be disabled if the variance of the current PU is smaller than 70th percentile of the variances of its parent-level PUs when the current PU is 16×16 or 8×8. The experimental results show that the proposed algorithm can reduce 55% encoding time of reference encoder HM10.0 at all Intra setting on average with negligible coding performance loss less than 1.22% BD-Rate for HD or Ultra-HD videos.
机译:新的视频编码标准HEVC相对于H.264具有更好的压缩性能,但代价是计算复杂性显着增加。它采用编码树结构,并为每个编码单元(CU)和预测单元(PU)实现分区和模式确定。对于帧内编码,应搜索从64×64到4×4的5个级别的PU,并且每个PU从35个候选模式中选择一种最佳模式,这是计算量很大的事情。因此,减少PU的级数,即,PU深度选择,是降低帧内编码复杂度的有效方法。在本文中,我们充分研究了不同大小的像素块的方差与PU的最佳划分之间的关​​系。结果表明,方差分布的第90个百分位数可用于区分大型PU和小型PU。此外,当64×64像素块的方差小于64×64 PU的方差分布的第90个百分位数且该90个百分位数小于绝对阈值时,可以禁用16×16 PU搜索以获取平滑区域。同时,如果当前PU是16×16或8×8时,如果当前PU的方差小于其父级PU的方差的第70个百分位数,则可以禁用进一步的划分。实验结果表明,该算法在所有Intra设置下平均可减少参考编码器HM10.0的55%编码时间,对于HD或Ultra-HD视频而言,其BD-Rate的编码性能损失可忽略不计,低于1.22%。

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