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Measuring circadian lighting through high dynamic range photography

机译:通过高动态范围摄影测量生物钟照明

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摘要

The human ocular system functions in a dual manner. While the most well-known function is to facilitate vision, a growing body of research demonstrates its role in resetting the internal body clock to synchronize with the 24-hour daily cycle. Most research on circadian rhythms is performed in controlled laboratory environments. Little is known about the variability of circadian light within the built and natural environments. Currently, very few specialized devices measure the circadian light, and they are not accessible to many researchers and practitioners. In this paper, tristimulus colour calibration procedures for high dynamic range photography are developed to measure circadian lighting. Camera colour accuracy is evaluated through CIE trichromatic (XYZ) measurements; and the results demonstrate a strong linear relationship between the camera recordings and a scientific-grade colorimeter. Therefore, it is possible to correct for the colour aberrations and use high dynamic range photographs to measure both photopic and circadian lighting values. Spectrophotometric measurements are collected to validate the methodology. Results demonstrate that measurements from high dynamic range photographs can correspond to the physical quantity of circadian luminance with reasonable precision and repeatability. Circadian data collected in built environments can be utilized to study the impact of design decisions on human circadian entrainment and to create guidelines and metrics for designing circadian friendly environments.
机译:人眼系统具有双重功能。尽管最著名的功能是促进视力,但越来越多的研究表明,它在重置体内时钟以与24小时每日周期同步方面发挥了作用。关于昼夜节律的大多数研究是在受控实验室环境中进行的。人们对自然环境和自然环境中生物钟的可变性知之甚少。当前,很少有专门的设备可以测量昼夜节律,许多研究人员和从业人员也无法使用它们。在本文中,开发了用于高动态范围摄影的三色校准程序来测量昼夜节律。摄像机色彩精度通过CIE三色(XYZ)测量进行评估;结果表明,相机记录与科学级色度计之间存在很强的线性关系。因此,可以校正色差并使用高动态范围照片来测量明视和昼夜照明值。收集分光光度法测量值以验证该方法。结果表明,从高动态范围照片获得的测量结果可以以合理的精度和可重复性对应于生物钟亮度的物理量。可以利用在构建环境中收集的昼夜节律数据来研究设计决策对人类昼夜节律的影响,并为设计昼夜节律环境创建指导方针和度量标准。

著录项

  • 来源
    《Lighting Research & Technology》 |2019年第5期|742-763|共22页
  • 作者

    B Jung; M Inanici;

  • 作者单位

    Department of Architecture, College of Built Environments, University of Washington, Seattle, USA;

    Department of Architecture, College of Built Environments, University of Washington, Seattle, USA;

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  • 正文语种 eng
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