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Scalable extensions of HEVC for next generation services

机译:HEVC的可扩展扩展为下一代服务

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The high efficiency video coding (HEVC) standard being developed by ITU-T VCEG and ISO/IEC MPEG achieves a compression goal of reducing the bitrate by half for the same visual quality when compared with earlier video compression standards such as H.264/AVC. It achieves this goal with the use of several new tools such as quad-tree based partitioning of data, larger block sizes, improved intra prediction, the use of sophisticated prediction of motion information, inclusion of an in-loop sample adaptive offset process etc. This paper describes an approach where the HEVC framework is extended to achieve spatial scalability using a multi-loop approach. The enhancement layer inter-predictive coding efficiency is improved by including within the decoded picture buffer multiple up-sampled versions of the decoded base layer picture. This approach has the advantage of achieving significant coding gains with a simple extension of the base layer tools such as inter-prediction, motion information signaling etc. Coding efficiency of the enhancement layer is further improved using adaptive loop filter and internal bit-depth increment. The performance of the proposed scalable video coding approach is compared to simulcast transmission of video data using high efficiency model version 6.1 (HM-6.1). The bitrate savings are measured using Bjontegaard Delta (BD) rate for a spatial scalability factor of 2 and 1.5 respectively when compared with simulcast anchors. It is observed that the proposed approach provides an average luma BD rate gains of 33.7% and 50.5% respectively.
机译:由ITU-T Vcyg和ISO / IEC MPEG开发的高效视频编码(HEVC)标准实现了与早期视频压缩标准(如H.264 / AVC)相比相同的视觉质量减少比特率的压缩目标。 。它通过使用几种新工具(如基于四树的数据分区,较大的块大小,改进的帧内预测),使用复杂的运动信息预测,包括循环样本自适应偏移过程等的使用较大的块尺寸。本文介绍了一种方法,其中HEVC框架扩展以实现使用多环方法实现空间可扩展性。通过在解码的基础层图片的解码的图像缓冲多个上采样版本内包括在解码的基础层图片中,提高了增强层互联编码效率。该方法具有通过自适应环路滤波器和内部比特深度增量进一步改善增强层的基础层工具的简单延伸,从而实现了具有基础层工具的简单延伸的重要编码增益的优点。使用高效模型6.1(HM-6.1)将所提出的可扩展视频编码方法的性能与视频数据的Simulcast传输进行比较。与Simulcast Anchors相比,使用Bjontegaard Delta(BD)速率测量比特率的节省时间分别为2和1.5的空间可伸缩性因子测量。观察到,该方法分别提供33.7%和50.5%的平均亮度BD速率。

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