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Operational Validation of the MOPITT Instrument Optical Filters

机译:MOPITT仪器滤光片的运行验证

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摘要

Optical bandpass filters in the Measurements of Pollution in the Troposphere (MOPITT) satellite remote sensing instrument selectivity limit the throughput radiance to absorptive spectral bands associated with the satellite-observed trace gases CO and CH_4. Precise specification of the spectral characteristics of these filters is required to optimize retrieval accuracy. The effects and potential causes of spectral shifts in the optical bandpass filter profiles are described. Specifically, a shift in the assumed bandpass profile produces a relative bias between the calibrated satellite radiances and the corresponding values calculated by an instrument-specific forward radiative transfer model. Conversely, it is shown that the observed bias (as identified and quantified using operational MOPITT satellite radiance data) can be used to determine the relative spectral shift between the nominal (prelaunch) filter profiles and the true operational (in orbit) profiles. Revising both the radiance calibration algorithm and the forward radiative transfer model to account for the revised filter profiles effectively eliminates the radiance biases.
机译:对流层污染测量(MOPITT)卫星遥感仪器选择性中的光学带通滤波器将通量辐射限制为与卫星观测到的痕量气体CO和CH_4相关的吸收光谱带。这些滤波器的光谱特性需要精确指定,以优化检索精度。描述了光学带通滤波器轮廓中光谱偏移的影响和潜在原因。具体而言,假设的带通曲线中的偏移会在已校准的卫星辐射与由特定于仪器的正向辐射传输模型计算出的相应值之间产生相对偏差。相反,表明观测到的偏差(使用MOPITT卫星辐射数据进行识别和量化)可用于确定名义(发射前)滤波器轮廓与实际(在轨)滤波器轮廓之间的相对光谱偏移。修改辐射率校准算法和正向辐射传递模型以解决修改后的滤波器轮廓,可以有效消除辐射率偏差。

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