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An Adaptive Mode Decision Algorithm Based on Video Texture Characteristics for HEVC Intra Prediction

机译:基于视频纹理特征的自适应模式决策算法在HEVC帧内预测中的应用

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The latest High Efficiency Video Coding (HEVC) standard could achieve the highest coding efficiency compared with the existing video coding standards. To improve the coding efficiency of the intra frame, a quad-tree-based variable block size coding structure that is flexible to adapt to various texture characteristics of images and up to 35 intra-prediction modes for each prediction unit (PU) is adopted in HEVC. However, the computational complexity is increased dramatically because all the possible combinations of the mode candidates are calculated in order to find the optimal rate distortion cost using the Lagrange multiplier. To alleviate the encoder computational load, this paper proposes an adaptive mode decision algorithm based on texture complexity and direction for HEVC intra prediction. First, an adaptive coding unit selection algorithm according to each depth levels’ texture complexity is presented to filter out unnecessary coding block. Then, the original redundant mode candidates for each PU are reduced according to its texture direction. The simulation results show that the proposed algorithm could reduce around 56% encoding time on average while maintaining the encoding performance efficiently with only a 1.0% increase in BD-rate compared with the test model HM16 of HEVC.
机译:与现有的视频编码标准相比,最新的高效视频编码(HEVC)标准可以实现最高的编码效率。为了提高帧内编码的效率,采用了基于四叉树的可变块大小编码结构,该结构可以灵活地适应图像的各种纹理特征,并且每个预测单元(PU)最多可使用35种帧内预测模式。 HEVC。但是,由于使用拉格朗日乘法器计算了所有可能的模式候选者组合以便找到最佳速率失真成本,因此计算复杂性急剧增加。为了减轻编码器的计算量,提出了一种基于纹理复杂度和方向的自适应模式决策算法,用于HEVC帧内预测。首先,提出了根据每个深度级别的纹理复杂度的自适应编码单元选择算法,以过滤掉不必要的编码块。然后,根据每个PU的纹理方向减少原始冗余模式候选。仿真结果表明,与HEVC的测试模型HM16相比,该算法平均可减少约56%的编码时间,同时保持有效的编码性能,而BD速率仅增加1.0%。

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