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Color-weak compensation using local affine isometry based on discrimination threshold matching

机译:基于判别阈值匹配的使用局部仿射等距的弱色补偿

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摘要

We develop algorithms for color-weak compensation and color-weak simulation based on Riemannian geometry models of color spaces. The objective function introduced measures the match of color discrimination thresholds of average normal observers and a color-weak observer. The developed matching process makes use of local affine maps between color spaces of color-normal and color-weak observers. The method can be used to generate displays of images that provide color-normal and color-weak observers with a similar color difference experience. It can also be used to simulate the perception of a color-weak observer for color-normal observers. We also introduce a new database of measurements of color discrimination threshold data for color-normal and color-weak observers obtained at different lightness levels in CIELUV space. The compensation methods include compensations of chromaticity using local affine maps between chromaticity planes of color-normal and color-weak observers, and one-dimensional (1D) compensation on lightness. We describe how to determine correspondences between the origins of local coordinates in color spaces of color-normal and color-weak observers using a neighborhood expansion method. After matching the origins of the two coordinate systems, a local affine map is estimated by solving a nonlinear equation, or singular-value-decomposition (SVD). We apply the methods to natural images and evaluate their performance using the semantic differential (SD) method. (C) 2015 Optical Society of America
机译:我们基于色彩空间的黎曼几何模型开发用于色差补偿和色差仿真的算法。引入的目标函数用于测量平均正常观察者和弱色观察者的颜色辨别阈值的匹配。发达的匹配过程利用了色常态和弱色观测者之间的局部仿射图。该方法可用于生成图像显示,从而为色常和色弱的观察者提供相似的色差体验。它也可以用于模拟颜色正常观察者对颜色较弱的观察者的感知。我们还为在CIELUV空间中不同亮度级别获得的颜色正常和颜色弱的观察者引入了一个新的颜色辨别阈值数据的测量数据库。补偿方法包括使用色常态和色弱观察者的色度平面之间的局部仿射图对色度进行补偿,以及对亮度进行一维(1D)补偿。我们描述如何使用邻域展开方法确定颜色正常和颜色弱的观察者的颜色空间中局部坐标的原点之间的对应关系。在匹配两个坐标系的原点之后,通过求解非线性方程或奇异值分解(SVD)来估计局部仿射图。我们将这些方法应用于自然图像,并使用语义差分(SD)方法评估其性能。 (C)2015年美国眼镜学会

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