闪烁:时间光调制刺激、反应和措施的综述

IF 2.1 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Lighting Research & Technology Pub Date : 2022-08-04 DOI:10.1177/14771535211069482
N. Miller, F. Leon, J. Tan, L. Irvin
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引用次数: 3

摘要

一个多世纪以来,闪烁一直是重要的照明系统考虑因素。更精确的术语是时间光调制(TLM)作为刺激,以及对TLM的反应作为不想要的视觉、认知或生理后果。随着照明技术的发展,不同形式的TLM出现了,人们对它们的反应也有所不同。今天,一些LED系统——包括LED、驱动器和控制——可能导致TLM产生严重的不良影响,而其他LED系统根本不会产生不良影响。LED系统可以提供比传统照明系统更宽范围的发光波形,其中一些显示出非常高的调制深度。它们比以前的任何光源都更能引起人们对幻像阵列的感知。在小于约80 Hz的调制频率下的直接闪烁效应和大于80 Hz的频闪效应已经得到了很好的理解,但幻相阵列效应还需要更多的探索和表征。本文重点介绍了目前用于量化TLM和人类对TLM反应的技术和研究历史。视障人士对TLM的反应可能会发生变化,但这种讨论超出了本综述的目的。因此,重点是具有正常视觉功能的个体。
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Flicker: A review of temporal light modulation stimulus, responses, and measures
Flicker has been an important lighting system consideration for over a century. More precise terms are temporal light modulation (TLM) as the stimulus, and responses to TLM as the unwanted visual, cognitive, or physiological consequences. As lighting technology evolved, different forms of TLM emerged, and so did responses to them. Today, some LED systems – encompassing the LED, driver, and control – can result in TLM causing severe unwanted effects, while other LED systems produce no unwanted effects at all. LED systems can deliver a much wider range of luminous waveforms than conventional lighting systems, some exhibiting very high modulation depths. More than any light source before, they can elicit perceptions of the phantom array. Direct flicker effects at modulation frequencies less than about 80 Hz and the stroboscopic effect at frequencies greater than 80 Hz are fairly well understood, but the phantom array effect needs more exploration and characterisation. This review focuses on the technology and research history that led to current metrics for quantifying TLM and human responses to TLM. Visually impaired individuals may exhibit alterations in their response to TLM, but such a discussion is beyond the intent of this review. Thus, the focus is on individuals with normal visual function.
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来源期刊
Lighting Research & Technology
Lighting Research & Technology 工程技术-光学
CiteScore
5.40
自引率
16.00%
发文量
69
审稿时长
>12 weeks
期刊介绍: Lighting Research & Technology (LR&T) publishes original peer-reviewed research on all aspects of light and lighting and is published in association with The Society of Light and Lighting. LR&T covers the human response to light, the science of light generation, light control and measurement plus lighting design for both interior and exterior environments, as well as daylighting, energy efficiency and sustainability
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