Thorseth T M, Kjeldstad B
Department of Physics, Norwegian University of Science and Technology, N-7491 Trondheim, Norway.
Appl Opt. 1999 Oct 20;38(30):6247-52. doi: 10.1364/ao.38.006247.
A measurement scheme and an algorithm have been developed to retrieve global irradiance ultraviolet solar spectra (290-400 nm) at a sampling rate of 0.5 Hz. The algorithm combines spectral irradiance measurements performed with a slow (a few minutes) scanning spectroradiometer (Optronic Model OL752) and a moderate bandwidth multichannel radiometer (Biospherical ground-based ultraviolet radiometer Model 541). The filter radiometer instrument allows for continuous observations of global UV radiation at five channels (approximately 10-nm bandwidth), performed simultaneously with spectral measurements. Information about changing cloud conditions during a spectral scan was retrieved from filter measurements and applied to spectral data, hence estimated spectra without cloud variations could be constructed. The quality of the estimated spectra depends on data quality from both instruments. The method works well in all kinds of weather conditions, as long as the Sun is above the horizon and none of the instruments are hampered by measurement errors.
已开发出一种测量方案和算法,以0.5赫兹的采样率获取全球辐照度太阳紫外光谱(290 - 400纳米)。该算法结合了使用慢速(几分钟)扫描光谱辐射计(Optronic型号OL752)和中等带宽多通道辐射计(Biospherical地基紫外辐射计型号541)进行的光谱辐照度测量。滤光辐射计仪器允许在五个通道(约10纳米带宽)连续观测全球紫外辐射,与光谱测量同时进行。从滤光测量中获取光谱扫描期间云况变化的信息,并将其应用于光谱数据,从而可以构建无云变化的估计光谱。估计光谱的质量取决于两种仪器的数据质量。只要太阳在地平线以上且没有仪器受到测量误差的影响,该方法在各种天气条件下都能很好地工作。