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自动多滤光片旋转阴影带辐射计:一种用于光学深度和辐射测量的仪器。

Automated multifilter rotating shadow-band radiometer: an instrument for optical depth and radiation measurements.

作者信息

Harrison L, Michalsky J, Berndt J

出版信息

Appl Opt. 1994 Aug 1;33(22):5118-25. doi: 10.1364/AO.33.005118.

Abstract

The multifilter rotating shadow-band radiometer is a ground-based instrument that uses independent interference-filter-photodiode detectors and the automated rotating shadow-band technique to make spectrally resolved measurements at seven wavelength passbands (chosen at the time of manufacture between 350 nm and 1.7 µm) of direct-normal, total-horizontal, and diffuse-horizontal irradiances. This instrument achieves an accuracy in direct-normal spectral irradiance comparable with that of tracking radiometers, and it is more accurate than conventional instruments for the determination of the diffuse and total-horizontal spectral irradiances because the angular acceptance function of the instrument closely approximates the ideal cosine response, and because the measured direct-normal component can be corrected for the remaining angular acceptance error. The three irradiance components are measured with the same detector for a given wavelength. Together with the automated shadow-band technique, this guarantees hat the calibration coefficients are identical for each, thus reducing errors when one compares them (as opposed to measurements made with independent instruments). One can use the direct-normal component observations for Langley analysis to obtain depths and to provide an ongoing calibration against the solar constant by extrapolation to zero air mass. Thus the long-term stability of all three measured components can be tied to the solar constant by an analysis of the routinely collected data.

摘要

多滤光片旋转阴影带辐射计是一种地基仪器,它使用独立的干涉滤光片光电二极管探测器和自动旋转阴影带技术,在七个波长通带(在制造时选择,范围在350纳米至1.7微米之间)对直射法向、总水平和漫射水平辐照度进行光谱分辨测量。该仪器在直射法向光谱辐照度方面达到的精度与跟踪辐射计相当,并且在确定漫射和总水平光谱辐照度方面比传统仪器更准确,这是因为仪器的角度接受函数非常接近理想的余弦响应,还因为可以对测量的直射法向分量进行校正以消除剩余的角度接受误差。对于给定波长,三个辐照度分量使用同一个探测器进行测量。与自动阴影带技术一起,这确保了每个分量的校准系数相同,从而减少了比较它们时的误差(与使用独立仪器进行的测量相反)。可以将直射法向分量观测用于兰利分析,以获得大气光学厚度,并通过外推到零空气质量来持续校准太阳常数。因此,通过对常规收集的数据进行分析,所有三个测量分量的长期稳定性都可以与太阳常数联系起来。

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