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Lessons learned from the AIRS pre-flight radiometric calibration

机译:从AIRS飞行前辐射定标中学到的经验教训

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The Atmospheric Infrared Sounder (AIRS) instrument flies on the NASA Aqua satellite and measures the upwelling hyperspectral earth radiance in the spectral range of 3.7-15.4 μm with a nominal ground resolution at nadir of 13.5 km. The AIRS spectra are achieved using a temperature controlled grating spectrometer and HgCdTe infrared linear arrays providing 2378 channels with a nominal spectral resolution of approximately 1200. The AIRS pre-flight tests that impact the radiometric calibration include a full system radiometric response (linearity), polarization response, and response vs scan angle (RVS). We re-derive the AIRS instrument radiometric calibration coefficients from the pre-flight polarization measurements, the response vs scan (RVS) angle tests as well as the linearity tests, and a recent lunar roll test that allowed the AIRS to view the moon. The data and method for deriving the coefficients is discussed in detail and the resulting values compared amongst the different tests. Finally, we examine the residual errors in the reconstruction of the external calibrator blackbody radiances and the efficacy of a new radiometric uncertainty model. Results show the radiometric calibration of AIRS to be excellent and the radiometric uncertainty model does a reasonable job of characterizing the errors.
机译:大气红外探测器(AIRS)靠NASA Aqua卫星飞行,并在3.7-15.4μm光谱范围内测量上升流高光谱地球辐射,其标称地面分辨率为13.5 km。 AIRS光谱使用温度控制光栅光谱仪和HgCdTe红外线性阵列实现,提供2378个通道,标称光谱分辨率约为1200。影响辐射校准的AIRS飞行前测试包括整个系统的辐射响应(线性),极化响应,以及响应vs扫描角度(RVS)。我们从飞行前的极化测量,响应与扫描(RVS)角度测试以及线性度测试以及最近的允许AIRS观察月球的月球滚动测试中重新得出AIRS仪器的辐射校准系数。详细讨论了得出系数的数据和方法,并比较了不同测试中的结果值。最后,我们检查了外部校准器黑体辐射重建中的残留误差以及新的辐射不确定性模型的有效性。结果表明,AIRS的辐射校准非常出色,并且辐射不确定性模型可以很好地表征误差。

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