Yang Li, Kruse Björn, Miklavcic Stanley J
Campus Norrköping (ITN), Linköping University, S-601 74, Norrköping, Sweden.
J Opt Soc Am A Opt Image Sci Vis. 2004 Oct;21(10):1942-52. doi: 10.1364/josaa.21.001942.
We extend the applicability of the recently revised Kubelka-Munk (K-M) theory to inhomogeneous optical media by treating inhomogeneous ink penetration of the substrate. We propose a method for describing light propagation in either homogeneous or inhomogeneous layers using series representations for the K-M scattering and absorption coefficients as well as for intensities of the upward and downward light streams. The conventional and matrix expressions for spectral reflectance and transmittance values of optically homogeneous media in the K-M theory are shown to be special cases of the present framework. Three types of ink distribution-homogeneous, linear, and exponential-have been studied. Simulations of spectral reflectance predict a depression of reflectance peaks and reduction of absorption bands characteristic of hue shifts and significant reduction of saturation and, in turn, color gamut.
通过处理基底的非均匀油墨渗透,我们将最近修订的库贝尔卡-蒙克(K-M)理论的适用性扩展到非均匀光学介质。我们提出了一种方法,使用K-M散射和吸收系数以及向上和向下光流强度的级数表示来描述均匀或非均匀层中的光传播。K-M理论中光学均匀介质的光谱反射率和透射率值的传统表达式和矩阵表达式被证明是本框架的特殊情况。研究了三种类型的油墨分布——均匀、线性和指数分布。光谱反射率模拟预测反射率峰值会降低,吸收带会减少,这是色调偏移的特征,饱和度会显著降低,进而色域也会减小。