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Maintaining calibration during the long-term space flight of the Solar Ultraviolet Spectral Irradiance Monitor (SUSIM)

机译:在太阳紫外线光谱辐照度监测器(SUSIM)的长期太空飞行中保持校准

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Abstract: The Solar Ultraviolet Spectral Irradiance Monitor on the Upper Atmospheric Research Satellite has been measuring the solar spectral irradiance between 115 nm and 410 nm since October 11, 1991. The original goal of the experiment was to maintain an absolute accuracy of 6 - 10% (a wavelength dependent, 2-sigma value) and a precision of 2% over a lifetime of the experiment, perhaps as long as an 11 year solar cycle. To do this, one must provide a time dependent accounting of the degradation of the optical elements' responsivity. The instrument was designed to maintain its calibration through the use of two identically-designed spectrometers, redundant optical elements, and four deuterium calibration lamps. Calibration measurements, which include solar as well as lamp spectral scans, are performed cyclically at intervals of approximately 1-month, 3-months, 6-months, and 12-months. We discuss the technique of determining the wavelength dependent degradation of the routinely used optical paths from the calibration measurements of sun and lamps. In so doing, we demonstrate the multiplicity of calibration data required to sequentially refine determination of the working channels' degradation. Estimated responsivity changes are also shown for the four years plus of instrument observations.!12
机译:摘要:自1991年10月11日以来,高层大气研究卫星上的太阳紫外线光谱辐照度监测仪一直在测量115 nm至410 nm之间的太阳光谱辐照度。该实验的最初目的是将绝对准确度保持在6-10% (取决于波长的2σ值),并且在整个实验周期(可能长达11年的太阳周期)中的精度为2%。为此,必须对光学元件的响应度的下降提供时间依赖性的考虑。该仪器旨在通过使用两个相同设计的光谱仪,冗余光学元件和四个氘校准灯来维持其校准。校准测量(包括太阳光谱和灯光谱扫描)以大约1个月,3个月,6个月和12个月的间隔周期性执行。我们讨论了根据太阳和灯的校准测量来确定常规使用的光路的波长相关衰减的技术。这样做,我们证明了依次校正工作通道退化的确定所需的多个校准数据。还显示了四年中仪器观测值的估计响应度变化!! 12

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