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Wearable device for measuring pupilar illuminance

机译:用于测量瞳孔照度的可穿戴设备

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Data on the exposure of the human eye to light can help researchers and design professionals to better understand building performance with regards to the well-being and health of users. However, technologies currently used to evaluate indoor lighting conditions from a fixed point of view and measure luminous quantities are unable to map out visual scenes in a similar way to the human eye. With the aim of contributing to overcome this gap, this paper presents "OcuLux", a wearable device made in Brazil, designed to continuously monitor pupilar illuminance for indoor environments. "OcuLux" was calibrated and the sensor was worn for 7 days in November 2016 at the Solar Energy and Building Physics Laboratory (LESO-PB) at école Polytechnique Fédérale de Lausanne (EPFL) Lausanne campus (Switzerland), under partly cloudy and overcast skies to diagnose the light dose received by a person performing typical office activities. The results showed that no significant differences were found between the light dose received in the morning and in the afternoon. Although "OcuLux" has a limited measuring range, its use in a real situation has indicated that it is reliable for measurements of pupilar illuminance.
机译:有关人眼暴露于光线下的数据可以帮助研究人员和设计专业人士更好地了解建筑物的性能以及用户的健康状况。但是,当前用于从固定的角度评估室内照明条件并测量发光量的技术无法以类似于人眼的方式绘制视觉场景。为了弥补这一差距,本文介绍了巴西制造的可穿戴设备“ OcuLux”,该设备旨在连续监控室内环境的瞳孔照度。 “ OcuLux”已校准,传感器于2016年11月在洛桑联邦理工学院(EPFL)洛桑校区(瑞士)的太阳能和建筑物理实验室(LESO-PB)上佩戴了7天,在多云和多云的天空下诊断执行典型办公室活动的人所接受的光剂量。结果表明,早晨和下午接受的光剂量之间没有发现显着差异。尽管“ OcuLux”的测量范围有限,但在实际情况下的使用表明它对于瞳孔照度的测量是可靠的。

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