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On the filter approach to perceptual transparency

机译:关于知觉透明的过滤方法

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摘要

In F. Faul and V. Ekroll (2002), we proposed a filter model of perceptual transparency that describes typical color changes caused by optical filters and accurately predicts perceived transparency. Here, we provide a more elaborate analysis of this model: (A) We address the question of how the model parameters can be estimated in a robust way. (B) We show that the parameters of the original model, which are closely related to physical properties, can be transformed into the alternative parameters hue H, saturation S, transmittance V, and clarity C that better reflect perceptual dimensions of perceived transparency. (C) We investigate the relation of H, S, V, and C to the physical parameters of optical filters and show that C is closely related to the refractive index of the filter, whereas V and S are closely related to its thickness. We also demonstrate that the latter relationship can be used to estimate relative filter thickness from S and V. (D) We investigate restrictions on S that result from properties of color space and determine its distribution under realistic choices of physical parameters. (E) We experimentally determine iso-saturation curves that yield nominal saturation values for filters of different hue such that they appear equally saturated.
机译:在F. Faul和V. Ekroll(2002)中,我们提出了感知透明度的滤镜模型,该模型描述了由光学滤镜引起的典型颜色变化,并准确地预测了感知的透明度。在这里,我们提供了对该模型的更详尽的分析:(A)我们解决了如何以可靠的方式估算模型参数的问题。 (B)我们表明,与物理特性密切相关的原始模型的参数可以转换为可更好地反映感知透明度的感知维度的色相H,饱和度S,透射率V和净度C的替代参数。 (C)我们研究了H,S,V和C与光学滤波器的物理参数之间的关系,发现C与滤波器的折射率密切相关,而V和S与滤波器的厚度密切相关。我们还证明了后者的关系可用于根据S和V估算相对滤光器的厚度。(D)我们研究了由色彩空间属性导致的对S的限制,并根据实际选择的物理参数确定了S的分布。 (E)我们通过实验确定等饱和度曲线,这些曲线可为不同色调的滤镜产生标称饱和度值,以使它们看起来同样饱和。

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