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Linking the von Kries model to Wien's law for the estimation of an illuminant invariant image

机译:将von Kries模型与维恩定律联系起来,以估计光源不变图像

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摘要

Modeling the color variation due to an illuminant change is an important task for many computer vision applications, like color constancy, object recognition, shadow removal and image restoration. The von Kries diagonal model and Wien's law are widely assumed by many algorithms for solving these problems. In this work we combine these two hypotheses and we show that under Wien's law, the parameters of the von Kries model are related to each other through the color temperatures of the illuminants and the spectral sensitivities of the acquisition device. Based on this result, we provide a method for estimating some camera cues that are used to compute the illuminant invariant intrinsic image proposed by Fin-layson and others. This is obtained by projecting the log-chromaticities of an input color image onto a vector depending only on the spectral cues of the acquisition device.
机译:对由于光源变化而引起的颜色变化进行建模是许多计算机视觉应用程序的重要任务,例如颜色恒定性,物体识别,阴影去除和图像恢复。解决这些问题的许多算法广泛采用了冯·克里斯对角线模型和维恩定律。在这项工作中,我们结合了这两个假设,并且表明在维恩定律下,von Kries模型的参数通过光源的色温和采集设备的光谱灵敏度相互关联。基于此结果,我们提供了一种方法,用于估计一些摄像头提示,这些摄像头提示用于计算Fin-layson等提出的光源不变内在图像。这是通过将输入彩色图像的对数色度投影到矢量上而实现的,该色度仅取决于采集设备的光谱提示。

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