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Preferred Chromaticity of Color-Tunable LED Lighting

机译:可调色LED照明的首选色度

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Previous research has demonstrated that individual personal control over light level benefits individuals and organizations. As a first step toward testing whether light source spectrum choices-which are possible with light emitting diode (LED) systems-offer similar benefits, we examined preferences for various spectra in a scale model of an office. Participants judged the model's brightness, colorfulness, and pleasantness when lit with five preset spectra with measured correlated color temperatures (CCTs) of 2855, 3728, 4751, 5769, and 6507 K created with five LED channels and one fluorescent spectrum (3750 K measured), all at approximately 500 lx. Then they chose their preferred light spectrum using the five LED channels, once as a free choice and once with an illuminance limit. Judgments of the fluorescent spectrum and the LED spectrum with the closest (matched) CCT did not differ. The preset judgments followed a quadratic pattern, with the lowest and highest CCT conditions having lower ratings than the three middle conditions. The free and illuminance-constrained lighting choices did not differ, with individuals' selections ranging from 2850 to 14,000 K and generally lying slightly below the blackbody curve.
机译:先前的研究表明,个人对灯光水平的控制有益于个人和组织。作为测试是否可以使用发光二极管(LED)系统选择光源光谱的第一步,我们提供了类似的好处,我们在办公室的比例模型中检查了各种光谱的偏好。参与者判断了模型的亮度,色彩鲜艳度和宜人性,当使用五个预设光谱点亮时,具有五个LED通道和一个荧光光谱(测得的3750 K)创建的相关色温(CCT)为2855、3728、4751、5769和6507 K ,全都约为500 lx。然后,他们使用五个LED通道选择自己喜欢的光谱,一次是自由选择,一次是有照度限制。具有最接近(匹配)CCT的荧光光谱和LED光谱的判断没有差异。预设判断遵循二次模式,最低和最高CCT条件的评级低于三个中间条件。自由和照度限制的照明选择没有差异,个人的选择范围为2850至14,000 K,通常略低于黑体曲线。

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