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Experimental Analysis for Modeling Color of Halftone Images

机译:半色调图像色彩建模的实验分析

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Reflectance models such as the monochrome Murray-Davies (MD) and the Neugebauer color equations make inaccurate predictions owing to changes in reflectance or tristimulus values (TSVs) of halftone dots and the paper between the dots. In this paper, we characterize the change of micro-TSVs as a function of printed area in spectral halftone image by a power function and compare its prediction efficiency using theoretically and experimentally measured limiting TSVs assuming dots of uniform thickness. We found that experimentally accounting for dot thickness variations as solid and mixed areas more precisely explained the single-model parameter that captured the observed lateral light scattering effect. The results showed that incorporating empirically modeled TSVs of the dots and the paper between dots, as well as introducing a new term addressing mixed area in the MD equation, produced CIE ΔE~*_(ab) in the range 1.22-1.76, and the overall gain was more than 1 ΔE~*_(ab).
机译:由于半色调网点和网点之间的纸张的反射率或三刺激值(TSV)的变化,诸如单色Murray-Davies(MD)和Neugebauer颜色方程式之类的反射率模型做出的预测不准确。在本文中,我们通过幂函数将微TSV的变化表征为光谱半色调图像中印刷区域的函数,并使用理论和实验测得的极限TSV(假设点的厚度均匀)比较其预测效率。我们发现,通过实验将点厚度变化解释为固体和混合区域,可以更精确地解释捕获观察到的横向光散射效应的单模参数。结果表明,结合经验建模的点和点之间的纸张的TSV,并在MD方程中引入一个新的术语来解决混合区域,产生的CIEΔE〜* _(ab)在1.22-1.76范围内,并且总增益大于1ΔE〜* _(ab)。

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