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Improving Color Space Conversion for Camera-Captured Images via Wide-Gamut Metadata

机译:通过宽域元数据提高用于相机捕获的图像的颜色空间转换

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Color space conversion is the process of converting color values in an image from one color space to another. Color space conversion is challenging because different color spaces have different sized gamuts. For example, when converting an image encoded in a medium-sized color gamut (e.g.. AdobeRGB or Display-P3) to a small color gamut (e.g.. sRGB), color values may need to be compressed in a many-to-one manner (i.e., multiple colors in the source gamut will map to a single color in the target gamut). If we try to convert this sRGB-encoded image back to a wider gamut color encoding, it can be challenging to recover the original colors due to the color fidelity loss. We propose a method to address this problem by embedding wide-gamut metadata inside saved images captured by a camera. Our key insight is that in the camera hardware, a captured image is converted to an intermediate wide-gamut color space (i.e., ProPhoto) as part of the processing pipeline. This wide-gamut image representation is then saved to a display color space and saved in an image format such as JPEG or HEIC. Our method proposes to include a small sub-sampling of the color values from the ProPhoto image stale in the camera to the final saved JPEG/HEIC image. We demonstrate that having this additional wide-gamut metadata available during color space conversion greatly assists in constructing a color mapping function to convert between color spaces. Our experiments show our metadata-assisted color mapping method provides a notable improvement (up to 60% in terms of AE) over conventional color space methods using perceptual rendering intent. In addition, we show how to extend our approach to perform adaptive color space conversion based spatially over the image for additional improvements.
机译:颜色空间转换是将图像中的颜色值从一个颜色空间转换为另一个颜色空间的过程。颜色空间转换是具有挑战性的,因为不同的颜色空间有不同的大小域。例如,当将在中等大小的色域(例如,adobergb或display-p3)中的图像转换为小颜色域(例如,srgb)时,颜色值可能需要以多对一的方式压缩(即,源色域中的多种颜色将映射到目标域中的单个颜色)。如果我们尝试将此SRGB编码的图像转换回更广泛的色彩颜色编码,因此由于颜色保真度损耗恢复原始颜色可能具有挑战性。我们提出了一种通过嵌入由相机捕获的保存图像中的宽域元数据来解决此问题的方法。我们的关键识别是,在相机硬件中,捕获的图像被转换为​​作为处理管道的一部分的中间宽游戏颜色空间(即,Prophoto)。然后将该宽域图像表示保存到显示颜色空间并以诸如JPEG或HEIC的图像格式保存。我们的方法提出包括从相机中的Prophoto图像陈旧的颜色值的小子采样到最终保存的JPEG / HEIC图像。我们演示在色彩空间转换期间具有此额外的宽域元数据,极大地有助于构建颜色映射函数以在颜色空间之间进行转换。我们的实验表明,我们的元数据辅助彩色映射方法通过感知呈现意图提供了在传统颜色空间方法上的显着改善(在AE方面最高60%)。此外,我们展示了如何扩展我们的方法来在图像上基于图像进行自适应颜色空间转换以进行额外的改进。

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