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Coding tools investigation for next generation video coding based on HEVC

机译:基于HEVC的下一代视频编码的编码工具研究

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The new state-of-the-art video coding standard, H.265/HEVC, has been finalized in 2013 and it achieves roughly 50% bit rate saving compared to its predecessor, H.264/MPEG-4 AVC. This paper provides the evidence that there is still potential for further coding efficiency improvements. A brief overview of HEVC is firstly given in the paper. Then, our improvements on each main module of HEVC are presented. For instance, the recursive quadtree block structure is extended to support larger coding unit and transform unit. The motion information prediction scheme is improved by advanced temporal motion vector prediction, which inherits the motion information of each small block within a large block from a temporal reference picture. Cross component prediction with linear prediction model improves intra prediction and overlapped block motion compensation improves the efficiency of inter prediction. Furthermore, coding of both intra and inter prediction residual is improved by adaptive multiple transform technique. Finally, in addition to deblocking filter and SAO, adaptive loop filter is applied to further enhance the reconstructed picture quality. This paper describes above-mentioned techniques in detail and evaluates their coding performance benefits based on the common test condition during HEVC development. The simulation results show that significant performance improvement over HEVC standard can be achieved, especially for the high resolution video materials.
机译:新的最新视频编码标准H.265 / HEVC已于2013年完成,与之前的H.264 / MPEG-4 AVC相比,它可节省约50%的比特率。本文提供的证据表明,仍有进一步提高编码效率的潜力。本文首先简要介绍了HEVC。然后,介绍了我们在HEVC的每个主要模块上的改进。例如,递归四叉树块结构被扩展以支持更大的编码单元和变换单元。通过高级时间运动矢量预测来改进运动信息预测方案,该高级时间运动矢量预测从时间参考图片继承大块内的每个小块的运动信息。具有线性预测模型的交叉分量预测改善了帧内预测,​​并且重叠块运动补偿提高了帧间预测的效率。此外,通过自适应多重变换技术改进了帧内和帧间预测残差的编码。最后,除了解块滤波器和SAO之外,还应用了自适应环路滤波器来进一步提高重建的图像质量。本文详细描述了上述技术,并根据HEVC开发过程中的常见测试条件评估了它们的编码性能优势。仿真结果表明,相对于HEVC标准,可以显着提高性能,特别是对于高分辨率视频材料而言。

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