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首页> 外文期刊>Applied optics >Visible Infrared Imaging Radiometer Suite reflective solar bands on-orbit calibration using solar diffuser illuminated by scattered light through the nadir port
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Visible Infrared Imaging Radiometer Suite reflective solar bands on-orbit calibration using solar diffuser illuminated by scattered light through the nadir port

机译:可见红外成像辐射计套件反光太阳能带在轨道校准使用散射光通过Nadir端口照亮的太阳漫射器

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摘要

A new variant to the standard on-orbit calibration of the reflective solar bands (RSBs) using a solar diffuser (SD) is formulated. Instead of direct solar exposure through the SD port in the front of the instrument as originally designed, the variant method uses light reflecting off Earth's surface coming through the nadir port as the light source to illuminate the built-in onboard SD. The methodology is applied to the Visible Infrared Imaging Radiometer Suite on board the Suomi National Polar-orbiting Partnership satellite, and is shown to be viable and useful. This approach effectively preserves the standard calibration pipeline other than using a different set of illumination data, corresponding to a different illumination source, for computing the radiance emanating from the SD. It has the added advantages of not dealing with operational needs for the standard calibration activities and completely bypassing the characterization of the transmission function of the attenuation screen in the front of the SD port. The RSB calibration coefficients are computed from the data of scattered light from the SD sector per each orbit, and a 16-day average is taken. The variant calibration coefficients are shown to well match the standard solar-based RSB calibration coefficients for Bands M5 to M8, but diverging results emerge for Bands M1 to M4, highlighting the known non-ideal behavior in the degradation of SD that contributes to the worsening error in RSB calibration. The result also shows a consistent 2% variation mission-long for all RSBs, showing the overall consistency of this first analysis of the new method but also the level of the uncertainty. The result and the implications of this study are discussed. (c) 2018 Optical Society of America
机译:配制使用太阳漫射器(SD)的反射太阳能带(RSB)的标准轨道校准的新变型。而不是通过最初设计的仪器前面的SD端口直接太阳能曝光,而是仪器方法使用反射地球表面的光通过Nadir端口作为光源,以照亮内置板载SD。该方法应用于船上全国轨道卫星卫星船上的可见红外成像辐射计套件,并被证明是可行和有用的。该方法有效地保留除了使用与不同照明源相对应的不同的照明数据集的标准校准流水线,用于计算从SD发出的辐射。它具有不处理标准校准活动的操作需求的额外优点,并完全绕过SD端口前方衰减屏幕的传输功能的表征。 RSB校准系数由每个轨道的SD SD扇区的散射光数据计算,并且拍摄16天的平均值。变型校准系数显示得很好地匹配带M5至M8的标准太阳型的RSB校准系数,但发散结果出现了频带M1至M4,突出了有助于恶化的SD的劣化中已知的非理想行为RSB校准中的错误。结果还显示了所有RSB的一致2%变异任务,显示了对新方法的第一次分析的整体一致性,也是不确定性的水平。讨论了该研究的结果和含义。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第5期|共11页
  • 作者单位

    NOAA Natl Environm Satellite Data &

    Informat Sert Ctr Satellite Applicat &

    Res ERA3 5830 Univ Res Ct College Pk MD USA;

    Colorado State Univ Cooperat Inst Res Atmosphere Ft Collins CO 80523 USA;

    NOAA Natl Environm Satellite Data &

    Informat Sert Ctr Satellite Applicat &

    Res ERA3 5830 Univ Res Ct College Pk MD USA;

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  • 正文语种 eng
  • 中图分类 应用;
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