Department of Electrical Engineering and Information Technology, Laboratory of Lighting Technology, Technical University of Darmstadt, Darmstadt, Germany.
Transfaculty Research Platform Molecular and Cognitive Neurosciences (MCN), Centre for Chronobiology, University of Basel, Basel, Switzerland.
Sci Rep. 2021 Nov 30;11(1):23188. doi: 10.1038/s41598-021-02136-y.
Smart integrative lighting systems aim to support human health and wellbeing by capitalising on the light-induced effects on circadian rhythms, sleep, and cognitive functions, while optimising the light's visual aspects like colour fidelity, visual comfort, visual preference, and visibility. Metameric spectral tuning could be an instrument to solve potential conflicts between the visual preferences of users with respect to illuminance and chromaticity and the circadian consequences of the light exposure, as metamers can selectively modulate melanopsin-based photoreception without affecting visual properties such as chromaticity or illuminance. This work uses a 6-, 8- and 11-channel LED luminaire with fixed illuminance of 250 lx to systematically investigate the metameric tuning range in melanopic equivalent daylight illuminance (EDI) and melanopic daylight efficacy ratio (melanopic DER) for 561 chromaticity coordinates as optimisation targets (2700 K to 7443 K ± Duv 0 to 0.048), while applying colour fidelity index R criteria from the TM-30-20 Annex E recommendations (i.e. R [Formula: see text] 85, R [Formula: see text] 85). Our results reveal that the melanopic tuning range increases with rising CCT to a maximum tuning range in melanopic DER of 0.24 (CCT: 6702 K, Duv: 0.003), 0.29 (CCT: 7443 K, Duv: 0) and 0.30 (CCT: 6702, Duv: 0.006), depending on the luminaire's channel number of 6, 8 or 11, respectively. This allows to vary the melanopic EDI from 212.5-227.5 lx up to 275-300 lx without changes in the photopic illuminance (250 lx) or chromaticity ([Formula: see text] [Formula: see text] 0.0014). The highest metameric melanopic Michelson contrast for the 6-, 8- and 11-channel luminaire is 0.16, 0.18 and 0.18, which is accomplished at a CCT of 3017 K (Duv: - 0.018), 3456 K (Duv: 0.009) and 3456 K (Duv: 0.009), respectively. By optimising ~ 490,000 multi-channel LED spectra, we identified chromaticity regions in the CIExy colour space that are of particular interest to control the melanopic efficacy with metameric spectral tuning.
智能集成照明系统旨在通过利用光对昼夜节律、睡眠和认知功能的诱导影响,同时优化光的视觉方面,如色彩保真度、视觉舒适度、视觉偏好和可见度,来支持人类健康和幸福感。同色异谱光谱调谐可以解决用户对照度和色度的视觉偏好与光暴露的昼夜节律后果之间潜在冲突的问题,因为同色异谱可以选择性地调节视黑质感光,而不会影响色度或照度等视觉特性。这项工作使用了一个具有 250 lx 固定照度的 6、8 和 11 通道 LED 灯具,系统地研究了在优化目标 561 个色度坐标(2700 K 至 7443 K ± Duv 0 至 0.048)时,在视黑质等效日光照度(melanopic EDI)和视黑质日光功效比(melanopic DER)中的同色异谱调谐范围,同时应用 TM-30-20 附件 E 建议中的色彩保真度指数 R 标准(即 R [Formula: see text] 85,R [Formula: see text] 85)。我们的结果表明,视黑质调谐范围随 CCT 的升高而增加,在 melanopic DER 的最大调谐范围为 0.24(CCT:6702 K,Duv:0.003)、0.29(CCT:7443 K,Duv:0)和 0.30(CCT:6702,Duv:0.006),这取决于灯具的通道数为 6、8 或 11。这使得可以在不改变光度照度(250 lx)或色度([Formula: see text] [Formula: see text] 0.0014)的情况下,将视黑质 EDI 从 212.5-227.5 lx 变化到 275-300 lx。6、8 和 11 通道灯具的最高同色异谱视黑质 Michelson 对比度分别为 0.16、0.18 和 0.18,这是在 CCT 为 3017 K(Duv:-0.018)、3456 K(Duv:0.009)和 3456 K(Duv:0.009)时实现的。通过优化约 490,000 个多通道 LED 光谱,我们在 CIExy 色空间中确定了对控制视黑质功效具有特殊意义的色度区域,这是通过同色异谱光谱调谐实现的。