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HEVC for high dynamic range services

机译:HEVC用于高动态范围服务

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Displays capable of showing a greater range of luminance values can render content containing high dynamic range information in a way such that the viewers have a more immersive experience. This paper introduces the design aspects of a high dynamic range (HDR) system, and examines the performance of the HDR processing chain in terms of compression efficiency. Specifically it examines the relation between recently introduced Society of Motion Picture & Television Engineers (SMPTE) ST 2084 transfer function and the High Efficiency Video Coding (HEVC) standard. SMPTE ST 2084 is designed to cover the full range of an HDR signal from 0 to 10,000 nits, however in many situations the valid signal range of actual video might be smaller than SMPTE ST 2084 supported range. The above restricted signal range results in restricted range of code values for input video data and adversely impacts compression efficiency. In this paper, we propose a code value remapping method that extends the restricted range code values into the full range code values so that the existing standards such as HEVC may better compress the video content. The paper also identifies related non-normative encoder-only changes that are required for remapping method for a fair comparison with anchor. Results are presented comparing the efficiency of the current approach versus the proposed remapping method for HM-16.2.
机译:能够示出更大范围的亮度值的显示器可以以使观众具有更沉浸的体验的方式呈现包含高动态范围信息的内容。本文介绍了高动态范围(HDR)系统的设计方面,并在压缩效率方面检查了HDR处理链的性能。具体而言,它检查了最近引入的运动图像和电视工程师协会(SMPTE)ST 2084传递功能和高效视频编码(HEVC)标准之间的关系。 SMPTE ST 2084旨在覆盖从0到10,000个nIT的HDR信号的全部范围,然而,在许多情况下,实际视频的有效信号范围可能小于SMPTE ST 2084支持的范围。上述限制信号范围导致输入视频数据的限制范围,并且对压缩效率产生不利影响。在本文中,我们提出了一种代码值重新映射方法,其将受限范围代码值扩展到全范围代码值,使得HEVC等现有标准可以更好地压缩视频内容。本文还识别与锚定公平比较的重新映射方法所需的相关非规范性编码器的更改。提出了比较电流方法的效率与HM-16.2所提出的重新映射方法的结果。

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