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个性化办公照明:促进生物钟健康和改善睡眠

Personalized Office Lighting for Circadian Health and Improved Sleep.

机构信息

Electrical Engineering Department, Eindhoven University of Technology, 5600 MB Eindhoven, The Netherlands.

Signify, 5656 AE Eindhoven, The Netherlands.

出版信息

Sensors (Basel). 2020 Aug 14;20(16):4569. doi: 10.3390/s20164569.

Abstract

In modern society, the average person spends more than 90% of their time indoors. However, despite the growing scientific understanding of the impact of light on biological mechanisms, the existing light in the built environment is designed predominantly to meet visual performance requirements only. Lighting can also be exploited as a means to improve occupant health and well-being through the circadian functions that regulate sleep, mood, and alertness. The benefits of well-lit spaces map across other regularly occupied building types, such as residences and schools, as well as patient rooms in healthcare and assisted-living facilities. Presently, Human Centric Lighting is being offered based on generic insights on population average experiences. In this paper, we suggest a personalized bio-adaptive office lighting system, controlled to emit a lighting recipe tailored to the individual employee. We introduce a new mathematical optimization for lighting schedules that align the 24-h circadian cycle. Our algorithm estimates and optimizes parameters in experimentally validated models of the human circadian pacemaker. Moreover, it constrains deviations from the light levels desired and needed to perform daily activities. We further translate these into general principles for circadian lighting. We use experimentally validated models of the human circadian pacemaker to introduce a new algorithm to mathematically optimize lighting schedules to achieve circadian alignment to the 24-h cycle, with constrained deviations from the light levels desired for daily activities. Our suggested optimization algorithm was able to translate our findings into general principles for circadian lighting. In particular, our simulation results reveal: (1) how energy constrains drive the shape of optimal lighting profiles by dimming the light levels in the time window that light is less biologically effective; (2) how inter-individual variations in the characteristic internal duration of the day shift the timing of optimal lighting exposure; (3) how user habits and, in particular, late-evening light exposure result in differentiation in late afternoon office lighting.

摘要

在现代社会,普通人 90%以上的时间都在室内度过。然而,尽管人们对光对生物机制的影响的科学认识不断加深,但现有的建筑环境中的光主要是为了满足视觉性能要求而设计的。通过调节睡眠、情绪和警觉性等昼夜节律功能,照明也可以被用来改善居住者的健康和幸福感。采光良好的空间的好处还可以映射到其他经常有人居住的建筑类型,如住宅和学校,以及医疗和辅助生活设施中的病房。目前,基于对人群平均体验的一般了解,正在提供以人为中心的照明。在本文中,我们建议采用个性化的生物适应办公照明系统,根据个人员工的需求控制灯光输出。我们引入了一种新的数学优化方法来控制灯光时间表,以使其与 24 小时昼夜节律周期相匹配。我们的算法估计并优化了人类生物钟模型中的实验验证参数。此外,它还限制了与日常活动所需的光照水平的偏差。我们进一步将这些转化为昼夜节律照明的一般原则。我们使用人类生物钟模型的实验验证模型引入了一种新的算法,通过数学优化灯光时间表来实现昼夜节律与 24 小时周期的对齐,同时限制了与日常活动所需的光照水平的偏差。我们提出的优化算法能够将我们的发现转化为昼夜节律照明的一般原则。具体来说,我们的模拟结果揭示了:(1)能量约束如何通过在光照生物效性较低的时间窗口调暗光照水平来驱动最佳光照曲线的形状;(2)个体内部白天特征持续时间的变化如何改变最佳光照暴露的时间;(3)用户习惯,特别是傍晚的光照暴露,如何导致下午晚些时候办公室照明的差异化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d03/7472178/42a29bf2226a/sensors-20-04569-g001.jpg

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