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Calibrated Colour Mapping Between LDC and CRT Displays: A Case Study

机译:LDC和CRT显示器之间的校准色彩映射:一个案例研究

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摘要

The primary goal of a colour characterization model is to establish a mapping from digital input values di (i=R,G,B) to tristimulus values such as XYZ. A good characterization model should be fast, use a small amount of data, and allow for backward mapping from tristimulus to di. This paper demonstrates implementations of three characterization models tested on seven different display devices. The characterization models implemented in this study are a 3D Look Up Table (LUT), a linear model [2],[4], and the masking model Tamura et al. in 2002 [6]. The devices include two CRT Monitors, three LCD Monitors, and two LCD Projectors. Several characteristics of the display devices are presented with respect to data collection and characterization modelling. These include the surprisingly long phosphor stabilization time on CRT monitors, which has implications for data collection; and the shifting chromaticity of mixed colours on LCD displays which adversely affects the masking model. The results of this study indicate that a simple linear model is the most effective and efficient for all devices used in the study, despite the common belief that it is sometimes inappropriate for LCD monitors [6]. A simple extension to the linear model is presented, and it is demonstrated that this extension improves white prediction without causing significant errors for other colours.
机译:颜色表征模型的主要目标是建立从数字输入值di(i = R,G,B)到三刺激值(例如XYZ)的映射。一个好的表征模型应该是快速的,使用少量的数据,并允许从三刺激到di的向后映射。本文演示了在七个不同的显示设备上测试的三个表征模型的实现。在这项研究中实现的特征模型是3D查找表(LUT),线性模型[2],[4]和掩盖模型Tamura等。在2002年[6]。这些设备包括两个CRT监视器,三个LCD监视器和两个LCD投影仪。相对于数据收集和特征建模,展示了显示设备的几个特征。这些包括在CRT监视器上出奇的长荧光粉稳定时间,这对数据收集有影响; LCD显示器上混合色的移动色度对掩盖模型产生不利影响。这项研究的结果表明,简单的线性模型对于研究中使用的所有设备都是最有效的方法,尽管人们普遍认为有时不适用于LCD显示器[6]。提出了对线性模型的简单扩展,并证明了该扩展改进了白色预测,而不会引起其他颜色的明显误差。

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    Cressman William Stone;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 English
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