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Optical Dot Gain Study on Different Halftone Dot Shapes

机译:不同半色调网点形状的光学网点增益研究

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Optical dot gain occurs because of the fact that a photon entering the non-inked substrate might scatter underneath a dot and be absorbed instead of reflected. This effect is dependent on the optical properties of the materials (paper, ink) and geometrical distribution of ink dots such as printing resolution, dot size and shape. In this paper, we compare the optical dot gain of halftone dots with different shapes and perimeters but with the same area size. For these purposes six dot shapes halftoned by using three different halftoning methods are considered for investigation. An effort is made to keep the area of the dot shapes constant for all six samples. Comparing the optical dot gain for different dot shapes shows the dependency of optical dot gain on the dot shape perimeter. Here we also show that there is a limit at which the optical dot gain is saturated. The dependency of optical dot gain on the dot shape perimeter verifies the fact that the amount of optical dot gain is different for different types of halftoning.
机译:出现光学点增益的原因是,进入非墨水基板的光子可能会在点下方散射并被吸收而不是被反射。这种效果取决于材料(纸张,墨水)的光学特性以及墨水点的几何分布,例如打印分辨率,点大小和形状。在本文中,我们比较了具有不同形状和周长但具有相同面积大小的半色调点的光学点增益。为了这些目的,考虑通过使用三种不同的半色调方法对半色调进行色调处理的六个点形状。努力使所有六个样本的点形状的面积保持恒定。比较不同点形状的光学点增益显示了光学点增益对点形状周长的依赖性。在这里,我们还表明,光点增益达到饱和有一个极限。光学点增益对点形状周长的依赖性验证了以下事实:对于不同类型的半色调,光学点增益的量是不同的。

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