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Traceability of solar UV measurements using the QASUME reference spectroradiometer

机译:使用QASUME参考光谱仪测量太阳紫外线的可追溯性

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摘要

One major objective of the European Joint Research Project "Traceability for surface spectral solar ultraviolet (UV) radiation" was to reduce the uncertainty of spectral UV measurements. The measurement instrument used for this work was the portable UV European reference spectroradiometer QASUME. The calibration uncertainty of this instrument was decreased and validated by a comparison of direct calibrations against a primary standard for spectral irradiance, a high temperature blackbody radiator, and against a reference detector using a spectrally tunable laser as a monochromatic source. The spectral irradiance responsivity of the reference detector is traceable to the primary standard of optical power, realized through a cryogenic radiometer, and to the SI unit of meter. The measuring technique was improved by the construction of a new reference spectroradiometer, QASUMEII. An improved input optics removes the dependences of the measured solar irradiance on the angle of incident for solar zenith angle smaller than 75 deg. Moreover, a hybrid photon detection system enables continuous tracking of the instrument's responsivity changes. For both spectroradiometer systems an uncertainty budget was calculated. The improvements have reduced the measurement uncertainties of solar spectral UV irradiance measurements from 4.8% in 2005 to 2.0% (k = 2) in the spectral region above 310 nm. The largest sources of uncertainty were the absolute spectral irradiance responsivity calibration, the angular response uncertainty, and the instrument stability using the hybrid detector, which were reduced from 3.6% to 1.1%, from 1.2% to 0.6%, and from 0.65% to 0.4%, with respect to the situation prior to the project. The new instrument was validated during a four month intercomparison relative to the QASUME reference. The mean ratio of the solar irradiance scans between the two reference spectroradiometers has an offset of +0.7% and a standard deviation of +/- 1.5% for a wavelength greater than 305 nm, which is well within the combined uncertainty of 3.7% calculated from the uncertainties of the two systems. (C) 2016 Optical Society of America
机译:欧洲联合研究项目“表面光谱太阳紫外线(UV)辐射的可追踪性”的一个主要目标是减少光谱紫外线测量的不确定性。用于这项工作的测量仪器是便携式UV欧洲参考光谱辐射仪QASUME。通过将直接校准与光谱辐照度的主要标准,高温黑体辐射器以及使用光谱可调激光器作为单色源的参考检测器进行比较,可以减少并验证该仪器的校准不确定性。参考检测器的光谱辐照度响应度可追溯到通过低温辐射计实现的光功率的主要标准,也可追溯到计量表的SI单位。通过构建新的参考光谱辐射仪QASUMEII改进了测量技术。改进的输入光学器件消除了太阳天顶角小于75度时测得的太阳辐照度对入射角的依赖性。此外,混合光子检测系统可以连续跟踪仪器的响应度变化。对于两个光谱辐射仪系统,都计算了不确定性预算。这些改进将太阳光谱紫外线辐射测量的测量不确定度从2005年的4.8%降低到310 nm以上光谱区域的2.0%(k = 2)。不确定性的最大来源是绝对光谱辐照度响应度校准,角度响应不确定性和使用混合检测器的仪器稳定性,从3.6%降低到1.1%,从1.2%降低到0.6%,从0.65%降低到0.4 %,关于项目之前的情况。相对于QASUME参考,新仪器经过了为期四个月的比较。对于大于305 nm的波长,两个参考光谱辐射仪之间的太阳辐照度扫描的平均比率具有+ 0.7%的偏移和+/- 1.5%的标准偏差,这完全在根据以下公式计算出的3.7%的合并不确定度内两个系统的不确定性。 (C)2016美国眼镜学会

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