论文标题

感知视频质量预测强调色度扭曲

Perceptual Video Quality Prediction Emphasizing Chroma Distortions

论文作者

Chen, Li-Heng, Bampis, Christos G., Li, Zhi, Sole, Joel, Bovik, Alan C.

论文摘要

在众多多媒体应用程序(例如自适应视频流,质量监视和其他数字电视应用程序)中,测量人类观察家观看的数字视频质量已成为一种常见的做法。在这里,我们探讨了一个重大但相对尚未探索的问题:在压缩引起的LUMA和色度扭曲引起的视频上测量感知质量。要研究这个问题,重要的是要了解出现的色度扭曲,它们与Luma压缩扭曲的关系以及它们如何影响感知的质量。我们设计并进行了一个主观实验,以测量Luma和Chroma扭曲的主观视频质量,并隔离地引入。具体而言,新的主观数据集总计包括$ 210 $的视频,折磨于不同水平的LUMA量化造成的扭曲,这些量子与不同量的色度量化相关。在受控的环境环境中,通过$ 34 $主题评估主观分数。使用新收集的主观数据,我们能够证明现有视频质量模型的重要缺点,尤其是在色度扭曲方面。此外,我们设计了一个客观的视频质量模型,该模型以现有视频质量算法为基础,通过以原则性的方式考虑色度频道的保真度。我们还发现,这种质量分析意味着,通过创造性地增加色度频道的压缩因子,可以减少现代视频编解码器的比特率消耗量。我们认为,这项工作将鼓励朝这个方向进行进一步的研究,以及在现代视频编码器中共同优化LUMA和色度压缩的最终目标上的进步。

Measuring the quality of digital videos viewed by human observers has become a common practice in numerous multimedia applications, such as adaptive video streaming, quality monitoring, and other digital TV applications. Here we explore a significant, yet relatively unexplored problem: measuring perceptual quality on videos arising from both luma and chroma distortions from compression. Toward investigating this problem, it is important to understand the kinds of chroma distortions that arise, how they relate to luma compression distortions, and how they can affect perceived quality. We designed and carried out a subjective experiment to measure subjective video quality on both luma and chroma distortions, introduced both in isolation as well as together. Specifically, the new subjective dataset comprises a total of $210$ videos afflicted by distortions caused by varying levels of luma quantization commingled with different amounts of chroma quantization. The subjective scores were evaluated by $34$ subjects in a controlled environmental setting. Using the newly collected subjective data, we were able to demonstrate important shortcomings of existing video quality models, especially in regards to chroma distortions. Further, we designed an objective video quality model which builds on existing video quality algorithms, by considering the fidelity of chroma channels in a principled way. We also found that this quality analysis implies that there is room for reducing bitrate consumption in modern video codecs by creatively increasing the compression factor on chroma channels. We believe that this work will both encourage further research in this direction, as well as advance progress on the ultimate goal of jointly optimizing luma and chroma compression in modern video encoders.

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