打印引擎色彩管理使用客户图像内容

Michael W. Elliot, J. Cockburn
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引用次数: 0

摘要

生产高质量的彩色印刷品要求在转移到不同介质时,将色彩的准确性和再现性保持在非常严格的公差范围内。印刷过程中的变化通常会产生颜色偏移,从而导致颜色重现性差。色彩管理系统的主要功能是保持色彩质量和一致性。目前,这些系统是在工厂通过打印大量的测试色块,测量它们并进行必要的调整来调整的。一旦打印机离开工厂,这个耗时的过程应该根据需要重复。在这项工作中,提出了一种利用在线全宽传感器反馈实时补偿打印颜色偏移的颜色管理系统。这种新颖的色彩管理尝试利用生产页面中已经呈现的输出像素,而不是打印测试贴片,以实现连续的打印机特性描述。打印的页面被在线扫描,结果用于更新将比色图像内容转换为引擎特定分色(例如CIELAB->CMYK)的过程。所提出的系统提供了一种通过简单地打印一组覆盖打印机色域的图像来执行自动打印机特性的方法。此外,目前在生产系统中使用的所有颜色转换功能(如灰色组件替换,色域映射和颜色平滑)都可以通过所提出的系统实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Print engine color management using customer image content
The production of quality color prints requires that color accuracy and reproducibility be maintained to within very tight tolerances when transferred to different media. Variations in the printing process commonly produce color shifts that result in poor color reproduction. The primary function of a color management system is maintaining color quality and consistency. Currently these systems are tuned in the factory by printing a large set of test color patches, measuring them, and making necessary adjustments. This time-consuming procedure should be repeated as needed once the printer leaves the factory. In this work, a color management system that compensates for print color shifts in realtime using feedback from an in-line full-width sensor is proposed. Instead of printing test patches, this novel attempt at color management utilizes the output pixels already rendered in production pages, for a continuous printer characterization. The printed pages are scanned in-line and the results are utilized to update the process by which colorimetric image content is translated into engine specific color separations (e.g. CIELAB->CMYK). The proposed system provides a means to perform automatic printer characterization, by simply printing a set of images that cover the gamut of the printer. Moreover, all of the color conversion features currently utilized in production systems (such as Gray Component Replacement, Gamut Mapping, and Color Smoothing) can be achieved with the proposed system.
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