Precise Evaluation of Light Pollution of Urban landscape Lighting
编号:369 访问权限:仅限参会人 更新:2022-05-13 11:36:51 浏览:585次 特邀报告

报告开始:2022年05月27日 10:30(Asia/Shanghai)

报告时间:20min

所在会场:[S11] Green and low-carbon technology for urban and rural construction [S11-2] Green and low-carbon technology for urban and rural construction-2

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摘要
ABSTRACT: A boosting nighttime economy in modern metropolis leads to a large scale application of colorful facade display lighting, therefore forming complicated and excessive artificial light at night (ALAN) and causing light pollution. However, there is a lack of quantification metrics regarding to the spectral impacts on eco-environment, especially for scales near the ground. This study conducts a first ground-level hyperspectral imaging (HSI) measurement and quantitative evaluation on luminous building facades from an observer’s perspective. Based on the HSI data, the spectral compositions across regions using different lighting types were summarized, in which LEDs covered most of facade lighting types. We further derived the luminance and chromatic distribution maps of the regional facades, and performed a characteristic comparison. We further analyzed the potential biological effects and the features of spectral compositions corresponding to high- or low- impact. Results show that, first, using LEDs has drastically increased both the color gamut and intensity; second, spectra with narrow-band shapes, i.e. RGB LEDs, may well have higher photobiological effects than the others when matching species’ sensitive bands; third, chromatic information of lighting is highly correlated with spectral impacts and therefore has potential for characterization. In this study, we clarify the general spectral features in night-time metropolis, and build up an ecological impact-oriented spectral assessment framework in urban lighting. This work provides fresh insights and feasible measures for the administrations in ground-level urban lighting masterplan, and proposes a possible way of real-time ALAN evaluation from redundant spectra. This work may provide references for lighting policy-makers, help relieve energy consumptions and carbon emissions, and decrease light pollutions for metropolis.
 
关键词
Artificial light at night; Spectral quantification; Photobiological effect; Ecological environment
报告人
Qi YAO
Fudan University

Qi Yao, Associate Professor /Ph.D supervisor of Fudan University. He is mainly engaged in interdisciplinary research related to advanced lighting, including color science, multi-spectral research, health display technology, light pollution, myopia and other related research.
He has published over 70 papers, including 22 SCI papers. He has been authorized 4 U.S. patents and over 20 Chinese invention patents. He has been served as the reviewer of many international and domestic journals and magazines. He has hosted a series of projects including the National Natural Science Foundation project, Guangdong Natural Science Foundation project, Shenzhen Basic Research Project, etc. He is supported by the leading talents of "Yellow Sea Pearl" Plan in Yancheng City, Jiangsu Province.
 

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重要日期
  • 会议日期

    05月26日

    2022

    05月27日

    2022

  • 05月03日 2022

    初稿截稿日期

  • 05月26日 2022

    报告提交截止日期

  • 05月28日 2022

    注册截止日期

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