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Computational color constancy using chromagenic filters in color filter arrays

机译:使用彩色滤光片阵列中的生色滤光片计算色彩恒定性

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We have proposed, in this paper, a new color constancy technique, an extension to the chromagenic color constancy. Chromagenic based illuminant estimation methods take two shots of a scene, one without and one with a specially chosen color filter in front of the camera lens. Here, we introduce chromagenic filters into the color filter array itself by placing them on top of R, G or B filters and replacing one of the two green filters in the Bayer's pattern with them. This allows obtaining two images of the same scene via demosaicking: a normal RGB image, and a chromagenic image, equivalent of RGB image with a chromagenic filter. The illuminant can then be estimated using chromagenic based illumination estimation algorithms. The method, we named as CFA based chromagenic color constancy (or 4C in short), therefore, does not require two shots and no registration issues involved unlike as in the other chromagenic based color constancy algorithms, making it more practical and useful computational color constancy method in many applications. Experiments show that the proposed color filter array based chromagenic color constancy method produces comparable results with the chromagenic color constancy without interpolation.
机译:在本文中,我们提出了一种新的颜色恒定性技术,它是发色颜色恒定性的扩展。基于生色的光源估计方法拍摄场景的两张照片,一张没有镜头,一张在镜头前装有特别选择的滤色镜。在这里,我们将生色滤光片引入滤色器阵列本身,方法是将它们放置在R,G或B滤光片的顶部,并用它们替换Bayer图案中的两个绿色滤光片之一。这允许通过去马赛克来获得同一场景的两个图像:正常的RGB图像,以及与使用生色滤镜的RGB图像等效的生色图像。然后可以使用基于生色的照明估计算法来估计光源。因此,我们将该方法命名为基于CFA的发色恒定性(或简称为4C),与其他基于发色的颜色恒定性算法不同,该方法不需要两次拍摄,也不会涉及注册问题,这使其更实用,更有用的计算颜色不变性方法在许多应用中。实验表明,所提出的基于彩色滤光片阵列的发色恒定性方法在不进行内插的情况下,与发色恒定性相比具有可比的结果。

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