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Guideline on Designing Laser Display Primary for Reproducing Real World Object Colors

机译:设计用于再现真实物体颜色的主要激光显示的指南

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Laser display is one of the next generation displays with the highly pure reproduction of colors and larger color gamut than any other electronic displays. However, it is inevitable to get some color regions that cannot be reproduced with three primaries. So recently more than three primary controllers are developing. In this study, a set of new RGB primary covering all object colors exist in real world is proposed as the guideline on designing laser display. The color region of real world objects was firstly described by measuring some objects: 367 artificial objects and 86 natural objects. For the artificial objects, garments and electronic devices were chosen, and flowers and leaves were chosen as the natural objects. Most of the measurement data from the artificial objects are located within the Munsell color region, while an amount of measurement data from natural objects are not. As a result, the color region of real world objects was approximated with 1294 Munsell standard colors and some natural colors located outside of the Munsell region. The boundary covering the color region of real world objects was optimized as a triangle so as to include both of NTSC gamut and sRGB gamut as well as measurement data. As a result, the optimum wavelengths of RGB primaries were defined as 630nm, 537nm, and 468nm, respectively.
机译:激光显示器是下一代显示器之一,具有比其他任何电子显示器都更高的色彩再现性和更大的色域。但是,不可避免地会出现一些无法用三个原色再现的色彩区域。因此,最近正在开发三个以上的主控制器。在这项研究中,提出了一套涵盖现实世界中所有物体颜色的新RGB原色作为设计激光显示器的指南。首先通过测量一些对象来描述现实世界对象的颜色区域:367个人造对象和86个自然对象。对于人造物体,选择了服装和电子设备,并选择了花朵和叶子作为自然物体。来自人造物体的大多数测量数据位于孟塞尔颜色区域内,而来自自然物体的大量测量数据则不在。结果,真实世界对象的颜色区域被近似为1294孟塞尔标准颜色和位于孟塞尔区域外部的一些自然色。将覆盖现实世界对象颜色区域的边界优化为三角形,以便同时包含NTSC色域和sRGB色域以及测量数据。结果,RGB原色的最佳波长分别定义为630nm,537nm和468nm。

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