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Efficient multiview video plus depth coding for 3D-HEVC based on complexity classification of the treeblock

机译:基于树块的复杂度分类的3D-HEVC高效多视点视频和深度编码

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摘要

High efficiency video coding standard-based 3D video (3D-HEVC) has been extended from HEVC to improve the coding efficiency of multiview video plus depth (MVD). Similar to the joint model of HEVC, a computationally expensive exhaustive mode decision is performed to find the least rate-distortion cost for each treeblock in 3D-HEVC. Furthermore, additional coding tools have been added to 3D-HEVC for improving the coding efficiency of the dependent texture video and depth map. Those tools achieve the highest possible coding efficiency, but also bring a significant computational complexity which limits 3D-HEVC from real-time applications. In order to reduce computational complexity, we propose an efficient multiview video plus depth coding algorithm for 3D-HEVC that adaptively utilizes the complexity classification of the treeblock. The coding complexity model of a treeblock is first analyzed according to the prediction mode and coding mode from the corresponding treeblocks in the reference views. Based on the complexity classification model of the treeblock, we propose two efficient low-complexity approaches, including fast mode size decision and adaptive motion search range selection. Extensive experimental results demonstrate that the proposed MVD coding algorithm can achieve the average computational saving about 60.1% with negligible rate-distortion performance loss in comparison with the original 3D-HEVC encoder.
机译:从HEVC扩展了基于高效视频编码标准的3D视频(3D-HEVC),以提高多视点视频加深度(MVD)的编码效率。类似于HEVC的联合模型,将执行计算量大的穷举模式决策,以找到3D-HEVC中每个树块的最小速率失真成本。此外,附加的编码工具已被添加到3D-HEVC,以提高从属纹理视频和深度图的编码效率。这些工具实现了最高的编码效率,但同时也带来了显着的计算复杂性,从而限制了实时应用程序中的3D-HEVC。为了降低计算复杂度,我们针对3D-HEVC提出了一种有效的多视点视频加深度编码算法,该算法自适应地利用了树块的复杂度分类。首先根据参考视图中相应树块的预测模式和编码模式,对树块的编码复杂度模型进行分析。基于树块的复杂度分类模型,我们提出了两种有效的低复杂度方法,包括快速模式大小决策和自适应运动搜索范围选择。大量的实验结果表明,与原始的3D-HEVC编码器相比,提出的MVD编码算法可以节省约60.1%的平均计算量,而失真率的损失却可以忽略不计。

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