Toro Javier, Funt Brian
Grupo de Ingeniería Biomédica (GIBULA), Universidad de Los Andes, Mérida 5101, Venezuela.
IEEE Trans Image Process. 2007 Jan;16(1):92-7. doi: 10.1109/tip.2006.884953.
A new multilinear constraint on the color of the scene illuminant based on the dichromatic reflection model is proposed. The formulation avoids the problem, common to previous dichromatic methods, of having to first identify pixels corresponding to the same surface material. Once pixels from two or more materials have been identified, their corresponding dichromatic planes can be intersected to yield the illuminant color. However, it is not always easy to determine which pixels from an arbitrary region of an image belong to which dichromatic plane. The image region may cover an area of the scene encompassing several different materials and, hence, pixels from several different dichromatic planes. The new multilinear constraint accounts for this multiplicity of materials and provides a mechanism for choosing the most plausible illuminant from a finite set of candidate illuminants. The performance of this new method is tested on a database of real images.
提出了一种基于二向色反射模型的关于场景光源颜色的新多线性约束。该公式避免了先前二向色方法中常见的问题,即必须首先识别对应于相同表面材料的像素。一旦识别出来自两种或更多种材料的像素,就可以将它们相应的二向色平面相交以得出光源颜色。然而,要确定图像任意区域中的哪些像素属于哪个二向色平面并非总是容易的。图像区域可能覆盖场景中包含几种不同材料的一个区域,因此包含来自几个不同二向色平面的像素。新的多线性约束考虑了这种材料的多样性,并提供了一种从有限的候选光源集合中选择最合理光源的机制。这种新方法的性能在真实图像数据库上进行了测试。