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Spatio-temporal colour correction of strongly degraded movies

机译:强烈降级电影的时空色彩校正

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摘要

The archives of motion pictures represent an important part of precious cultural heritage. Unfortunately, these cinematography collections are vulnerable to different distortions such as colour fading which is beyond the capability of photochemical restoration process. Spatial colour algorithms-Retinex and ACE provide helpful tool in restoring strongly degraded colour films but, there are some challenges associated with these algorithms. We present an automatic colour correction technique for digital colour restoration of strongly degraded movie material. The method is based upon the existing STRESS algorithm. In order to cope with the problem of highly correlated colour channels, we implemented a preprocessing step in which saturation enhancement is performed in a PCA space. Spatial colour algorithms tend to emphasize all details in the images, including dust and scratches. Surprisingly, we found that the presence of these defects does not affect the behaviour of the colour correction algorithm. Although the STRESS algorithm is already in itself more efficient than traditional spatial colour algorithms, it is still computationally expensive. To speed it up further, we went beyond the spatial domain of the frames and extended the algorithm to the temporal domain. This way, we were able to achieve an 80 percent reduction of the computational time compared to processing every single frame individually. We performed two user experiments and found that the visual quality of the resulting frames was significantly better than with existing methods. Thus, our method outperforms the existing ones in terms of both visual quality and computational efficiency.
机译:电影档案是珍贵文化遗产的重要组成部分。不幸的是,这些摄影收藏品容易受到诸如光褪色之类的各种失真的影响,这是光化学修复过程所不能实现的。空间色彩算法-Retinex和ACE提供了还原严重降解的彩色胶片的有用工具,但是这些算法存在一些挑战。我们提出了一种自动色彩校正技术,用于对严重退化的电影材料进行数字色彩还原。该方法基于现有的STRESS算法。为了解决高度相关的颜色通道的问题,我们实施了预处理步骤,其中在PCA空间中执行饱和度增强。空间色彩算法倾向于强调图像中的所有细节,包括灰尘和划痕。令人惊讶地,我们发现这些缺陷的存在不影响颜色校正算法的行为。尽管STRESS算法本身已经比传统的空间色彩算法更有效,但是它在计算上仍然很昂贵。为了进一步加快速度,我们超出了帧的空间范围,将算法扩展到了时间范围。这样,与单独处理每个单个帧相比,我们可以将计算时间减少80%。我们进行了两个用户实验,发现生成的帧的视觉质量明显优于现有方法。因此,我们的方法在视觉质量和计算效率方面都优于现有方法。

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