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Extended Coding Unit Partitioning for Future Video Coding

机译:未来视频编码的扩展编码单元分区

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The flexible partitioning structure such as quad-tree plus binary-tree (QTBT) plays important roles in the next generation video coding standard. This paper investigates new coding unit (CU) partitioning methods to further improve the compression efficiency. In particular, we propose the extended quad-tree partitioning and asymmetric ternary-tree partitioning to further develop the principle behind the existing partitioning structure. First, a central extended quad-tree (CENTRAL-EQT) partitioning is introduced, which extends the traditional QT partitioning with central pattern and generates four elaborately designed sub-CUs with different sizes. Second, we propose a parallel extended quad-tree (PARALLEL-EQT) partitioning that allows the CU to split along a single direction, leading to four identical size sub-blocks. Third, we present an asymmetric ternary-tree (ATT) method, which splits the CU asymmetrically into three sub-blocks. The proposed new partitioning methods allow the interleaving with binary-tree partitioning for enhanced adaptability, and they can be jointly enabled to capture different characteristics of the local content. Simulation results on the JEM7-QTBT-Only platform show that averagely 4.92, 4.81 and 5.08 BD-Rate savings are achieved for the luma component by the proposed methods under random access (RA), low-delay P (LDP) and low-delay B (LDB) configurations, respectively, with around 725 encoding time increase and negligible decoding time increase. Furthermore, experimental results also reveal that the proposed partitioning schemes are effective when cooperating with the upcoming Versatile Video Coding standard.
机译:诸如四曲树加二进制树(QTBT)的灵活的分区结构在下一代视频编码标准中起重要作用。本文研究了新的编码单元(CU)分区方法,以进一步提高压缩效率。特别是,我们提出了扩展的四边形分区和非对称三元树分区,以进一步发展现有分区结构背后的原理。首先,介绍中央扩展四边形树(Central-EQT)分区,其扩展了具有中央图案的传统QT分区,并产生具有不同尺寸的四个精心设计的子CU。其次,我们提出了一个并行扩展四边形(并行EQT)分区,允许CU沿着单个方向分开,导致四个相同的尺寸子块。第三,我们介绍了一个不对称的三元树(ATT)方法,其不对称地将CU分成三个子块。所提出的新分区方法允许与二进制树分区交错以获得增强的适应性,并且可以共同启用它们以捕获本地内容的不同特征。仅限JEM7-QTBT的平台上的仿真结果表明,通过随机接入(RA),低延迟P(LDP)和低延延迟,通过所提出的方法实现了4.92,4.81和5.08 BD速率的BD速率节省。 B(LDB)配置分别为约725个编码时间增加和可忽略的解码时间增加。此外,实验结果还表明,当与即将到来的多功能视频编码标准协同时,所提出的分区方案是有效的。

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