IEEE Trans Image Process. 2018 Apr;27(4):1862-1877. doi: 10.1109/TIP.2017.2785290.
We present a physics-based illumination estimation approach explicitly designed to handle natural images under ambient light. Existing physics-based color constancy methods are theoretically perfect but do not handle real-world images well because the majority of these methods assume a single illuminant. Therefore, specular pixels selected using existing methods produce estimated dichromatic lines that are thick or curvilinear in the presence of ambient light, thus generating significant errors. Based on the Phong reflection model, we show that a group of specular pixels on a uniformly colored object, although they are subject to intensity thresholding, produce a unique dichromatic line length depending on the geometry of each image path. Assuming that the longest dichromatic line is the most desirable when estimating the chromaticity of an illuminant, ambient-robust specular pixels are also found on the same path on which the longest dichromatic line segment is generated. Therefore, we propose a method to find the optimal image path in which the specular pixels produce the longest dichromatic line. Even though the number of collected specular pixels is reduced using the proposed method, they are proven to be more accurate when determining the illuminant chromaticity even in the existing methods. Experiments with an established benchmark data set and a self-produced image set find that the proposed method is better able to locate the illuminant chromaticity compared with the state-of-the-art color constancy methods.
我们提出了一种基于物理的光照估计方法,专门用于处理环境光下的自然图像。现有的基于物理的颜色恒常性方法在理论上是完美的,但不能很好地处理真实世界的图像,因为这些方法中的大多数都假设只有一个光源。因此,使用现有方法选择的镜面像素会产生估计的二色线,在环境光下这些线可能会变粗或弯曲,从而产生很大的误差。基于 Phong 反射模型,我们表明,在均匀颜色的物体上的一组镜面像素,尽管它们受到强度阈值的限制,但会根据每个图像路径的几何形状产生独特的二色线长度。假设在估计光源的色度时,最长的二色线是最理想的,因此也可以在生成最长二色线段的相同路径上找到环境稳健的镜面像素。因此,我们提出了一种方法来找到产生最长二色线的最佳图像路径。尽管使用所提出的方法减少了收集的镜面像素的数量,但它们在确定光源色度方面被证明更加准确,即使在现有的方法中也是如此。使用一个已建立的基准数据集和一个自制的图像集进行的实验表明,与最先进的颜色恒常性方法相比,所提出的方法能够更好地定位光源的色度。