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Evaluating Potential Spectral Impacts of Various Artificial Lights on Melatonin Suppression Photosynthesis and Star Visibility

机译:评估各种人工光对褪黑激素抑制光合作用和恒星能见度的潜在光谱影响

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摘要

Artificial light at night can be harmful to the environment, and interferes with fauna and flora, star visibility, and human health. To estimate the relative impact of a lighting device, its radiant power, angular photometry and detailed spectral power distribution have to be considered. In this paper we focus on the spectral power distribution. While specific spectral characteristics can be considered harmful during the night, they can be considered advantageous during the day. As an example, while blue-rich Metal Halide lamps can be problematic for human health, star visibility and vegetation photosynthesis during the night, they can be highly appropriate during the day for plant growth and light therapy. In this paper we propose three new indices to characterize lamp spectra. These indices have been designed to allow a quick estimation of the potential impact of a lamp spectrum on melatonin suppression, photosynthesis, and star visibility. We used these new indices to compare various lighting technologies objectively. We also considered the transformation of such indices according to the propagation of light into the atmosphere as a function of distance to the observer. Among other results, we found that low pressure sodium, phosphor-converted amber light emitting diodes (LED) and LED 2700 K lamps filtered with the new Ledtech’s Equilib filter showed a lower or equivalent potential impact on melatonin suppression and star visibility in comparison to high pressure sodium lamps. Low pressure sodium, LED 5000 K-filtered and LED 2700 K-filtered lamps had a lower impact on photosynthesis than did high pressure sodium lamps. Finally, we propose these indices as new standards for the lighting industry to be used in characterizing their lighting technologies. We hope that their use will favor the design of new environmentally and health-friendly lighting technologies.
机译:晚上的人造光可能对环境有害,并干扰动植物,恒星能见度和人体健康。为了估计照明设备的相对影响,必须考虑其辐射功率,角度光度法和详细的光谱功率分布。在本文中,我们集中于频谱功率分布。尽管特定的光谱特性在夜间被认为是有害的,但在白天却被认为是有利的。例如,尽管富含蓝色的金属卤化物灯在夜间可能对人体健康,星光可见度和植物的光合作用造成问题,但在白天却非常适合植物生长和光疗。在本文中,我们提出了三个新的指标来表征灯的光谱。设计这些指标是为了快速估算灯光谱对褪黑激素抑制,光合作用和恒星可见性的潜在影响。我们使用这些新指标客观地比较了各种照明技术。我们还考虑了根据光到大气中的传播与到达观察者的距离的函数,对这些指数的转换。在其他结果中,我们发现,用新型Ledtech的Equilib滤光片过滤的低压钠,磷光转换的琥珀色发光二极管(LED)和LED 2700 K灯与高浓度的相比,对褪黑激素抑制和恒星可见性的影响较小或相当压力钠灯。与高压钠灯相比,低压钠灯,LED 5000 K过滤灯和LED 2700 K过滤灯对光合作用的影响较小。最后,我们提出这些指标作为照明行业的新标准,以用于表征其照明技术。我们希望它们的使用将有利于设计新的对环境和健康有益的照明技术。

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