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Dot gain compensation in the blue noise mask

机译:蓝噪声掩模的点增益补偿

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摘要

Frequency modulated (FM) halftoning or 'stochastic screening,' has attracted a great deal of attention in the printing industry in recent years. It has several advantages over conventional halftoning. But one serious problem that arises in FM halftoning is dot gain. One approach to stochastic screening uses a specially constructed halftone screen, the blue noise mask (BNM), to produce an unstructured and visually appealing pattern of halftone dots at any gray level. In this paper, we will present methods to correct dot gain with the BNM. Dot gain is related to the area-to-perimeter ration of printed spots. We can exploit this feature in different ways. At a medium level, a B>NM pattern will have 'connected' as well as 'isolated' dots. Normally, as we build down BNM patterns to lower levels, a specific number of white dots will be replace by black dots. Since connected white dots are more likely to be picked than isolated white dots, this will results in substantial dot gain because of the increasing number of isolated white dots. We show that it is possible to constrain the process of constructing a BNM such that isolated dots are preferentially removes, thus significantly reducing dot gain in a BNM.
机译:调频(FM)半色调或“随机加网”,吸引了在印刷行业的极大关注,在最近几年。它比传统的半色调的几个优点。但中出现的FM加网一个严重的问题是网点扩大。一种方法是随机加网使用一个专门构造的半色调网屏,蓝色噪声屏蔽(BNM),在任何灰度级,以产生半色调点的非结构化和视觉吸引力的图案。在本文中,我们将介绍的方法来正确的网点扩大与国行。点增益是关系到区域到周边的配给印刷斑点。我们可以利用不同的方式此功能。处于中等水平,一个B> NM图案将具有“连接”以及“分离的”点。通常情况下,当我们建立上下BNM模式到较低的水平,白点的具体数量将是由黑点进行更换。由于连接的白点是更可能比孤立白点采摘,这将导致大量的网点扩大,因为越来越多的孤立白点的。我们发现,有可能限制构建国行,使得孤立点是优先去除,从而显著降低在国行网点扩大的过程。

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