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Discomfort glare from small, high luminance light sources in outdoor nighttime environments.

机译:在室外夜间环境中,小型高亮度光源会产生不适感。

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摘要

The overarching goal of this research was to examine humans' subjective and physiological responses to small, high luminance light sources in outdoor nighttime environments. Currently, discomfort glare is rarely calculated in lighting practice (Remaking Cities Institute (RCI) 2011), partly, because it is not known which metric predicts glare most accurately in the given application.;This dissertation describes a parametric experiment evaluating the effects of three glare source luminances (20,000; 205,000; 750,000 cd/m2), two source positions (0°, 10°), two source sizes (10-5, 10-4 sr), and three background luminances (0.03; 0.3; 1 cd/m 2) on the subjective measure of perceived glare (a seven-point rating scale) and two objective measures (relative pupil size (RPS) and electromyographic (EMG) recordings of the muscles around the eyes). Subjective responses and predictions by four metrics (the outdoor sports and area lighting metric (CIE 112-1994), the motor vehicle lighting metric (Schmidt-Clausen and Bindels 1974), a combination of two metrics by Bullough et al. (2008, 2011), and the Unified Glare Rating (UGR) small source extension (CIE 146, 147-2002)) were correlated to determine which metric predicts discomfort glare best in the tested ranges. Fifty-six participants were tested at Musco Sports Lighting in an apparatus constructed specifically for this experiment and fully controlled through custom software.;Repeated-measures Analysis of Variance was applied to subjective and RPS data; one of the results showed that when background luminance decreases, the RPS increases (F = 390.94, df = 2, p < 0.0001). The EMG data were not analyzed due to problems with data acquisition that resulted in partial data incompleteness, however, insights gained are discussed. The correlation analysis showed that the UGR small source extension correlated best with subjective responses (r = 0.879, p < 0.0001).
机译:这项研究的总体目标是研究人类在室外夜间环境中对小型高亮度光源的主观和生理反应。当前,在照明实践中很少计算不适感眩光(Remade Cities Institute(RCI)2011),部分原因是,在给定的应用中,尚不清楚哪种度量能够最准确地预测眩光。眩光光源亮度(20,000; 205,000; 750,000 cd / m2),两个光源位置(0°,10°),两个光源尺寸(10-5、10-4 sr)和三个背景亮度(0.03; 0.3; 1 cd / m 2)的主观测量值(七分等级量表)和两个客观测量值(眼睛周围肌肉的相对瞳孔大小(RPS)和肌电图(EMG)记录)。主观反应和预测来自四个指标(户外运动和区域照明指标(CIE 112-1994),机动车照明指标(Schmidt-Clausen和Bindels 1974),Bullough等人(2008、2011)的两个指标的组合)和统一眩光等级(UGR)小源扩展(CIE 146,147-2002))相关联,以确定哪种度量标准可以在测试范围内最好地预测不适眩光。五十六名参与者在Musco Sports Lighting进行了测试,使用了专门为此实验构建的设备,并通过定制软件完全控制了该设备。;重复测量方差分析应用于主观和RPS数据;结果之一显示,当背景亮度降低时,RPS会增加(F = 390.94,df = 2,p <0.0001)。由于数据采集问题导致部分数据不完整,因此未对EMG数据进行分析,但是将讨论获得的见解。相关分析表明,UGR小源扩展与主观反应的相关性最佳(r = 0.879,p <0.0001)。

著录项

  • 作者

    Tyukhova, Yulia.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Architectural engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 294 p.
  • 总页数 294
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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