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Stability of the Nine Sky Quality Meters in the Dutch Night Sky Brightness Monitoring Network

机译:荷兰夜空亮度监测网络中九个天空质量计的稳定性

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摘要

In the context of monitoring abundance of artificial light at night, the year-to-year stability of Sky Quality Meters (SQMs) is investigated by analysing intercalibrations derived from two measurement campaigns that were held in 2011 and 2012. An intercalibration comprises a light sensitivity factor and an offset for each SQM. The campaigns were concerned with monitoring measurements, each lasting one month. Nine SQMs, together forming the Night Sky Brightness Monitoring network (MHN) in The Netherlands, were involved in both campaigns. The stability of the intercalibration of these instruments leads to a year-to-year uncertainty (standard deviation) of 5% in the measured median luminance occurring at the MHN monitoring locations. For the 10-percentiles and 90-percentiles, we find 8% and 4%, respectively. This means that, for urban and industrial areas, changes in the sky brightness larger than 5% become detectable. Rural and nature areas require an 8%–9% change of the median luminance to be detectable. The light sensitivety agrees within 8% for the whole group of SQMs.
机译:在监视夜间人造光的丰度的背景下,通过分析2011年和2012年举行的两次测量活动得出的相互校准,研究了天空质量仪(SQM)的逐年稳定性。相互校准包括对光的敏感性每个SQM的系数和偏移量。这些运动与监测测量有关,每个监测持续一个月。九个SQM共同组成了荷兰的夜空亮度监测网络(MHN),参与了这两个活动。这些仪器的相互校准的稳定性导致在MHN监视位置处测得的中值亮度的年度不确定度(标准偏差)为5%。对于10%和90%,我们分别找到8%和4%。这意味着,对于城市和工业区,大于5%的天空亮度变化可以检测到。农村和自然地区要求可以检测到中值亮度的8%–9%的变化。整个SQM组的感光度均在8%之内。

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