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MODIS Aqua Optical Throughput Degradation Impact on Relative Spectral Response and Calibration of Ocean Color Products

机译:MODIS Aqua光学吞吐量的降低对海洋光谱产品相对光谱响应和校准的影响

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Since Moderate Resolution Imaging Spectroradiometer Aqua's launch in 2002, the radiometric system gains of the reflective solar bands have been degrading, indicating changes in the system's optical throughput. To estimate the optical throughput degradation, the electronic gain changes were estimated and removed from the measured system gain. The derived optical throughput degradation shows a rate that is much faster in the shorter wavelengths than the longer wavelengths. The wavelength-dependent optical throughput degradation modulated the relative spectral response (RSR) of the bands. In addition, the optical degradation is also scan angle-dependent due to large changes in response versus the scan angle over time. We estimated the modulated RSR as a function of time and scan angles and its impacts on sensor radiometric calibration for the ocean science. Our results show that the calibration bias could be up to 1.8% for band 8 (412 nm) due to its larger out-of-band response. For the other ocean bands, the calibration biases are much smaller with magnitudes at least one order smaller.
机译:自从2002年推出中等分辨率成像光谱仪Aqua以来,反射太阳波段的辐射测量系统增益一直在下降,这表明系统的光通量发生了变化。为了估算光吞吐量的下降,估算了电子增益的变化,并将其从测得的系统增益中删除。得出的光通量下降显示出一个速率,在较短的波长下比在较长的波长下快得多。波长相关的光通量衰减调制了频段的相对光谱响应(RSR)。另外,由于响应随时间的变化相对于扫描角度的较大变化,光学劣化也取决于扫描角度。我们估计调制后的RSR是时间和扫描角度的函数,及其对海洋科学传感器辐射定标的影响。我们的结果表明,由于频段8(412 nm)的较大带外响应,校准偏差可能高达1.8%。对于其他海洋带,校准偏差要小得多,幅度至少要小一个数量级。

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