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A NEW WEARABLE DEVICE FOR MEASURING PUPILAR ILLUMINANCE AND EVALUATE DISCOMFORT GLARE

机译:一种用于测量Pupilar照明和评估不适眩光的新型可穿戴装置

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Throughout the 20th-century lighting systems designed for office buildings have focused mainly on the amount of light needed for work, based on visual criteria: illuminance in the horizontal plane was the most important design objective while non-visual biological effects were not considered. This paper presents a research carried out at LESO solar experimental building at EPFL (Lausanne, Switzerland), designed to investigate how light flux reaches the user's eyes. During 5 full days in January 2017, two young females with normal vision used each one a wearable device named OcuLux, which has an RGB sensor attached to the glass frames for registering continuously the actual pupilar illuminance (lux). At the end of each day the participants answered an online questionnaire based on Office Lighting Survey. Relative position of participants implies in different light doses. Qualitative and quantitative data were important to understand how light reaches the humans eyes.
机译:在整个用于办公楼的20世纪照明系统中,专注于工作所需的光线,基于视觉标准:水平面的照度是最重要的设计目标,而不考虑非视觉生物效应。本文介绍了在EPFL(瑞士洛桑)的Leso太阳能实验建筑中进行的研究,旨在调查光通量如何达到用户的眼睛。在2017年1月的5个全天内,两个具有正常视觉的年轻女性,使用每个名为oculux的可穿戴设备,其具有连接到玻璃框架的RGB传感器,用于连续注册实际的Pupilar照明(Lux)。在每一天结束时,参与者根据办公照明调查回答了一个在线问卷调查。参与者的相对位置意味着不同的光剂量。定性和定量数据对于了解光线如何到达人类的眼睛是很重要的。

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