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Improvements in the on-orbit response versus scan-angle characterization for the MODIS ocean color bands

机译:改进轨道响应与Modis海洋色带的扫描角度表征

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On-orbit characterization of the response versus scan-angle (RVS) is one of the most challenging aspects of the reflective solar band (RSB) calibration for the MODIS instruments onboard the Terra and Aqua spacecraft. The degradation of the solar diffuser, together with the lack of onboard calibrators (OBCs) to cover additional scan angles, other than the one for the lunar observations, has resulted in the use of Earth view responses from the pseudo-invariant desert sites to track the on-orbit RVS changes. This approach has been implemented in Collection 6 (C6) and C6.1 for bands 1-4, 8 and 9 of both instruments and also band 10 of Terra MODIS. As the missions continue to operate over a decade beyond their designed life and the instrument optics continue to degrade, it is expected that the OBC based RVS currently applied to other bands, specifically the high-gain ocean bands, will be inadequate to maintain the long-term calibration stability. An interband calibration approach is formulated and implemented in this paper. The proposed approach relies on the use of a spectrally matching stable reference band to evaluate the long-term calibration stability of the high-gain ocean bands that typically saturate while viewing the selected calibration deserts. Results from this approach indicate a noticeable drift for Terra MODIS bands 11 and 12 whereas the Aqua bands continue to show excellent temporal stability. These results are consistent with the corrections derived by the NASA Ocean Biology Processing Group (OBPG) and are expected to have minimum impacts on the downstream science products.
机译:响应与扫描角度(RVS)的轨道表征是MODIS仪器的反射太阳能带(RSB)校准的最具挑战性方面之一,是Terra和Aqua SpaceCraft的MODIS仪器。太阳漫射器的劣化与缺少车载校准器(OBC)一起覆盖额外的扫描角度,除了月球观测之外,导致地球视图反应从伪不变的沙漠地点进行跟踪On-On-Orbit RVS更改。这种方法已经在Collection 6(C6)和C6.1中实现,用于两个仪器的带1-4,8和9以及Terra Modis的带10。由于任务继续在十年内超出其所设计的寿命和仪器光学持续降级,因此预计目前基于OBC的RVS应用于其他乐队,特别是高增益海洋乐队,将不足以保持长期 - 校准稳定性。在本文中配制和实施了间带间校准方法。所提出的方法依赖于使用光谱匹配的稳定参考频带来评估高增益海洋带的长期校准稳定性,该长期校准稳定性通常在观察所选择的校准沙漠的同时饱和。这种方法的结果表明Terra Modis带11和12的显着漂移,而Aqua带继续显示出优异的时间稳定性。这些结果与美国宇航局海洋生物学处理组(OBPG)所衍生的校正一致,预计将对下游科学产品产生最低影响。

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