色域
色调
轻巧
原色
亮度
色阶
色彩平衡
计算机科学
洋红
青色
色差
颜色深度
光谱颜色
计算机视觉
RGB颜色模型
RGB颜色空间
色度
人工智能
色空间
颜色模型
彩色图像
光学
物理
图像处理
图像(数学)
GSM演进的增强数据速率
墨水池
语音识别
作者
Kenichiro Masaoka,Fu Jiang,Mark D. Fairchild,Rodney L. Heckaman
摘要
Abstract There are claims that multi‐chromatic displays can achieve a wider color gamut by the use of additional highly saturated secondary color channels. However, there are other claims that these displays lose lightness and/or color saturation at brighter levels. These apparently divergent views have led to some controversy in the display industry and at standard setting organizations. This study examines the color gamut volume for a variety of simulated and measured multi‐chromatic (sometimes incorrectly referred to as “multi‐primary”) displays using combinations of white and/or secondary color channels, such as cyan, magenta, and yellow. Furthermore, a two‐dimensional gamut representation, referred to as “gamut rings,” is introduced to illustrate that the addition of nonprimary optical color channels to a trichromatic (RGB) display can result in a significant decrease in the chroma at higher lightness levels. The additional saturated color channels can increase the gamut volume only around their hues at darker levels. The results also confirm the validity of comparing the color light output and white light output for revealing the design trade‐offs between the high‐peak white and the color‐image brightness for multi‐chromatic displays.
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