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Quadtree Based Nonsquare Block Structure for Inter Frame Coding in High Efficiency Video Coding

机译:基于四叉树的非方块结构用于高效视频编码中的帧间编码

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A concept of a quadtree based nonsquare block coding structure is presented in this paper for the emerging High Efficiency Video Coding standard, which includes a quadtree based asymmetric motion partitioning scheme and a nonsquare quadtree transform (NSQT) algorithm. Nonsquare motion partitioning in inter frame coding provides the possibility of getting more accurate prediction results by splitting one coding block into two nonsquare prediction blocks. Contrary to the traditional symmetric motion partitions (SMP), asymmetric motion partitions (AMP) are proposed to improve the coding efficiency, especially for the coding blocks with irregular object boundaries. NSQT is designed for nonsquare prediction blocks (SMP and AMP), which combines square and nonsquare transform blocks in a unified transform structure. It exploits the directional characteristic of an image block to improve the transform efficiency. The combination of nonsquare partitions and NSQT provides high coding flexibility and low implementation cost for both encoder and decoder design. Simulation results show that about 0.9%–2.8% bit-rate saving can be achieved in terms of different configurations, and subjective quality can also be improved.
机译:针对新兴的高效视频编码标准,本文提出了一种基于四叉树的非正方形块编码结构的概念,该标准包括基于四叉树的非对称运动分区方案和非方形四叉树变换(NSQT)算法。帧间编码中的非平方运动划分提供了通过将一个编码块分成两个非平方预测块来获得更准确的预测结果的可能性。与传统的对称运动分区(SMP)相反,提出了非对称运动分区(AMP)以提高编码效率,特别是对于具有不规则对象边界的编码块。 NSQT是为非正方形预测块(SMP和AMP)设计的,该块将正方形和非正方形变换块合并为一个统一的变换结构。它利用图像块的方向特性来提高变换效率。非正方形分区和NSQT的组合为编码器和解码器设计提供了很高的编码灵活性和较低的实现成本。仿真结果表明,就不同的配置而言,可以节省大约0.9%–2.8%的比特率,并且还可以提高主观质量。

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