Department of Experimental Psychology, Heinrich Heine University Düsseldorf , Düsseldorf , Germany.
Chair of Psychology and Human-Machine Interaction, University of Passau , Passau , Germany.
Ergonomics. 2019 Nov;62(11):1462-1473. doi: 10.1080/00140139.2019.1663940. Epub 2019 Sep 18.
As light sources based on light emitting diodes (LED) are increasingly used to replace classic tungsten-based light sources in household lighting applications, possible impairments of colour perception under those light sources due to a different spectral power distribution become a major concern. The Colour Rendering Index (CRI) which is the only measure available to the end user is controversial and does not represent a comprehensive measure of colour perception. Aspects of colour perception disregarded by the CRI such as colour discrimination have to be taken into account as well. Therefore, we evaluated colour discrimination performance under a commercially available phosphor-converted LED light source from a popular brand (OSRAM) in comparison to a classic tungsten-based halogen light source. Colour discrimination performance was not affected by the type of light source, indicating that the phosphor-converted LED light source enables colour discrimination performance comparable to that of halogen lighting despite being associated with a lower CRI. Considering the increasing use of energy efficient light sources, we compared colour discrimination under a common type of phosphor-converted LED and under traditional halogen lighting. Colour discrimination performance was comparable in both lighting conditions, indicating that the phosphor-converted LED can replace halogen lighting without sacrificing colour discrimination for energy efficiency. LED: light emitting diode; CRI: colour rendering index; CCT: correlated colour temperature; CIE: commission internationale de l'éclairage; FMHT: Farnsworth-Munsell 100-Hue Test; lm: lumen; lx: lux, lumen/m^2; W: watt; nm: nanometer; K: kelvin.
随着基于发光二极管(LED)的光源越来越多地被用于替代家庭照明应用中的经典钨丝光源,由于光谱功率分布的不同,这些光源下可能会对颜色感知造成损害,这成为一个主要关注点。色彩再现指数(CRI)是唯一可供最终用户使用的指标,但存在争议,不能代表颜色感知的综合衡量标准。CRI 忽略了颜色感知的方面,例如颜色辨别能力,也需要考虑在内。因此,我们评估了一种市售的、来自知名品牌(欧司朗)的荧光粉转换型 LED 光源与经典钨丝卤素光源下的颜色辨别性能。光源类型对颜色辨别性能没有影响,这表明尽管荧光粉转换型 LED 光源的 CRI 较低,但它能够实现与卤素照明相当的颜色辨别性能。鉴于节能光源的使用越来越多,我们比较了常见的荧光粉转换型 LED 和传统卤素照明下的颜色辨别性能。两种照明条件下的颜色辨别性能相当,表明荧光粉转换型 LED 可以替代卤素照明,而不会因节能而牺牲颜色辨别能力。