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Change of circadian effect with colour temperature and eye spectral transmittance at different ages

机译:改变色温的生理效应在不同的年龄和眼睛的光谱透射率

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摘要

With the recent advances in photobiology research and light-emitting diode technology, considering the circadian effects and the potential health benefits of lighting has attracted much attention. In this work, to achieve a white light-emitting LED cluster with beneficial and tunable circadian effects, a red-green-blue-warm white colour-mixing method based on pulse width modulation has been introduced and developed. Five optimal spectral power distributions were achieved with the correlated colour temperatures of 2700, 4000, 5000, 6500 and 8000 K that provide maximum colour-rendering indices of 95.0, 96.6, 96.8, 95.6 and 93.5 for each correlated colour temperature. Moreover, the Bellia model was modified to take into account the reduction in spectral transmittance of the human eye that occurs with age. Using the five spectral power distributions, based on the eye spectral transmittance with age-related change, we studied the change of the circadian effect with corneal illuminance at the different correlated colour temperatures. Solutions are provided for scenarios where circadian effect should be avoided for different age groups while the reasonable illuminance and colour temperature are maintained.
机译:光生物学研究的最新进展和发光二极管技术,考虑生理效应和潜在的健康灯光吸引了很多的好处的关注。发光LED集群和有益的red-green-blue-warm可调的生理效应白色的调色方法基于脉冲宽度介绍了调制和发展。五个最优光谱功率分布实现了与温度相关的颜色的2700、4000、5000、6500和8000 K提供最大的显色性指数为95.0,96.6,96.8、95.6和93.5为每一个相关的颜色温度。考虑到减少修改人眼的光谱透射率随着年龄的增长发生。分布,基于光谱透光率与年龄相关的变化,我们的研究的变化与角膜生理效应照度的不同相关的颜色温度。场景应该是生理的影响为不同年龄组而避免合理的照度和色温维护。

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