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Spectral transmittance model for stacks of transparencies printed with halftone colors

机译:使用半色调颜色打印的透明胶片叠的光谱透射率模型

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The present work investigates the transmission of light through stacks of halftone printed transparencies. We propose a spectral transmittance model describing the multiple reflections of light between the transparencies, whose individual reflectance and transmittance have themselves been obtained by a prediction model. The model for single printed transparency involves the multiple reflections of light between the interfaces as well as the orientation-dependent attenuations of light within the plastic and ink layers. A procedure enables converting the nominal ink surface coverages into effective ones by taking into account the spreading of the inks. Calibration of the model is based on printing a small number of color patches on one transparency and measuring their spectral transmittance. Regarding the stacks of transparencies, an experimental test carried out with inkjet printed samples shows good agreement between predictions and measurements for stacks of two, three and four transparencies. Stochastic halftones are used in order to avoid the apparition of moire patterns when superposing the halftones. By inversion of the model, we are able to determine the halftone colors to print on each transparency in order to obtain by superposition one targeted color. An original application of this, called "color matching", consists in producing one color of stack from various combinations of colors on the transparencies. The prediction accuracy of the proposed model guarantees the good visual uniformity of the resulting colored area.
机译:本工作研究了通过叠印的半色调透明胶片的光传输。我们提出了一种光谱透射率模型,该模型描述了透明胶片之间光的多次反射,其单个反射率和透射率本身已通过预测模型获得。单一印刷透明性的模型涉及界面之间光的多次反射,以及塑料层和油墨层中光的与方向有关的衰减。通过考虑油墨的扩散,可以通过一种程序将标称油墨表面覆盖率转换为有效的油墨覆盖率。该模型的校准基于在一种透明胶片上打印少量色标并测量其光谱透射率。关于透明胶片叠,使用喷墨打印的样本进行的实验测试显示,对于两个,三个和四个透明胶片叠的预测和测量结果之间具有良好的一致性。使用随机半色调以避免在叠加半色调时出现莫尔条纹。通过模型的反转,我们能够确定要在每种透明胶片上打印的半色调颜色,以便通过叠加获得一种目标颜色。这种技术的原始应用称为“颜色匹配”,它是由透明胶片上各种颜色的组合产生一种颜色的纸叠。所提出模型的预测精度保证了所得着色区域的良好视觉均匀性。

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