IEEE Trans Image Process. 2016 Apr;25(4):1873-86. doi: 10.1109/TIP.2016.2523428. Epub 2016 Jan 28.
Periodic clustered-dot screens are widely used for electrophotographic printers due to their print stability. However, moiré is a ubiquitous problem that arises in color printing due to the beating together of the clustered-dot, periodic halftone patterns that are used to represent different colorants. The traditional solution in the graphic arts and printing industry is to rotate identical square screens to angles that are maximally separated from each other. However, the effectiveness of this approach is limited when printing with more than four colorants, i.e., N -color printing, where N > 4 . Moreover, accurately achieving the angles that have maximum angular separation requires a very high-resolution plate writer, as is used in commercial offset printing. Commercially available high-end digital printers cannot achieve this resolution. In this paper, we propose a systematic way to design color screen sets for periodic, clustered-dot screens that offer more explicit control of the moiré properties of the resulting screens when used in color printing. We develop a principled approach for the moiré-free screen design that is called lattice-based screen design. The basic concept behind our approach is the creation of the screen set on a 2D lattice in the frequency domain, and then picking each fundamental frequency vector of the individual colorant planes in the created spectral lattice according to the desired properties. The lattice-based screen design offers more flexibility in designing N -color screen sets with different halftone geometries, and all of them are guaranteed to be all-orders moiré-free. We demonstrate the efficacy of our proposed method by introducing several new screen designs, and a comparison with published screen designs.
周期性点簇屏幕由于其打印稳定性而被广泛应用于静电印刷机。然而,由于用于表示不同着色剂的点簇、周期性半色调图案的相互干扰,莫尔纹是彩色印刷中普遍存在的问题。在图形艺术和印刷行业的传统解决方案是将相同的正方形屏幕旋转到彼此最大分离的角度。然而,当使用超过四种着色剂进行打印时,这种方法的效果有限,即 N 色打印,其中 N > 4 。此外,准确实现具有最大角分离的角度需要非常高分辨率的印版写入器,如商业胶印中使用的那样。商业上可用的高端数字打印机无法达到此分辨率。在本文中,我们提出了一种系统的方法来设计周期性点簇屏幕的色屏集,当用于彩色打印时,可以更明确地控制所得屏幕的莫尔纹特性。我们开发了一种无莫尔纹屏幕设计的原理方法,称为基于晶格的屏幕设计。我们方法的基本概念是在频域中的二维晶格上创建屏幕集,然后根据所需的特性从创建的光谱晶格中选择各个着色剂平面的每个基本频率向量。基于晶格的屏幕设计在设计具有不同半色调几何形状的 N 色屏幕集方面具有更大的灵活性,并且所有这些屏幕集都保证是全阶无莫尔纹的。我们通过引入几种新的屏幕设计并与已发表的屏幕设计进行比较,证明了我们提出的方法的有效性。