Towards spectral prediction of 2.5D prints for soft-proofing applications

Theo Phan Van Song, C. Andraud, Maria V. Ortiz Segovia
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引用次数: 4

Abstract

Soft-proofing, the representation of a final print on a display device, is a valuable tool only if the representation corresponds closely to the phenomena involved in the printing process. In a previous work, we employed a color prediction model (CPM) based on the four-flux theory and the optical characterization of the inks used by a 2.5D printer. We were able to predict accurately reflectance and transmittance of ink slabs of different thicknesses for the primary colorants of the Oce High Resolution 2.5D printer. Because it works under any illumination and does not require preliminary measurements (unlike most CPMs), our four-flux model is appropriate for soft-proofing strategies. In the present work, we take our model to the next stage to make the color prediction of relief prints even more general. Using only the primary colorants, we simulate the reflectance and transmittance colors of ink mixtures at different thicknesses. Then we print a hard-copy proof to measure their reflectance and transmittance to assess our model. We achieve satisfying results as the color difference is below two CIELAB AE94 units whatever the ink mixture and the thickness.
用于软打样应用的2.5D打印的光谱预测
软打样,即最终印刷品在显示设备上的表现形式,只有在表现形式与印刷过程中涉及的现象密切相关时,才是一种有价值的工具。在之前的工作中,我们采用了基于四通量理论和2.5D打印机所用油墨的光学特性的颜色预测模型(CPM)。我们能够准确地预测Oce高分辨率2.5D打印机原色不同厚度油墨板的反射率和透射率。由于它可以在任何照明下工作,并且不需要初步测量(与大多数cpm不同),因此我们的四通量模型适用于软防策略。在目前的工作中,我们将我们的模型带入下一个阶段,使凸版版画的颜色预测更加普遍。仅使用原色,我们模拟了不同厚度的油墨混合物的反射率和透射率颜色。然后,我们打印了一份硬拷贝证明,测量了它们的反射率和透射率,以评估我们的模型。我们取得了令人满意的结果,无论油墨混合物和厚度如何,色差都在两个CIELAB AE94单位以下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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