视频编码的低复杂度内部预测改进

Xin Zhao, V. Seregin, A. Said, Kai Zhang, Hilmi E. Egilmez, M. Karczewicz
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引用次数: 10

摘要

在现有的视频编码标准(如H.264/AVC和HEVC)中,通常使用沿预测方向的固定对称预测滤波器推导出帧内预测,例如,在平面模式下,使用对称预测滤波器预测右上和左下的样本。然而,在邻近参考样本可用性不对称的情况下,HEVC中设计的内预测滤波器的性能可能不是最优的。为了进一步细化帧内预测,提高预测样本的精度,本文提出了HEVC帧内预测的低复杂度细化方法,分别应用于常用的平面、直流、水平和垂直模式。该方法只需要在HEVC的帧内预测实现基础上进行简单的加法和位移操作。实验结果表明,在不增加运行时复杂度的情况下,帧内编码的平均编码增益为0.7%。
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Low-Complexity Intra Prediction Refinements for Video Coding
In existing video coding standards such as H.264/AVC and HEVC, the intra prediction is typically derived using fixed, symmetric prediction filters along the prediction direction, e.g., in planar mode, top-right and bottom-left samples are predicted using symmetric prediction filters. However, in case ofasymmetric availability of neighboring reference samples, the performance of intra prediction filters designed in HEVC may not be optimal. To further refine the intra prediction and achieve higher accuracy of prediction samples, this paper proposes low-complexity refinements over HEVC intra prediction, which are applied on frequently used planar, DC, horizontal and vertical modes. The proposed method only requires simple addition and bit-shift operations on top of HEVC’s intra prediction implementation. Experimental results show that, an average of 0.7% coding gain is achieved for intra coding with no increase in run-time complexity.
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