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SeaWiFS Lunar Calibration Methodology after Six Years on Orbit

机译:轨道运行六年后的SeaWiFS月球校准方法

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The SeaWiFS Project uses monthly lunar calibrations to monitor the on-orbit radiometric stability of SeaWiFS over the course of its mission. Ongoing analyses of the steadily increasing lunar calibration data set have led to improvements in the calibration methodology over time. The lunar measurements must be normalized to a common viewing geometry for the calibration time series to track the radiometric stability of the instrument, Corrections computed from the time and geometry of the observations include Sun-Moon and instrument-Moon distances, oversampling of the lunar image, and variations in the lunar phase angles. The Project has recently implemented a correction for lunar libration that is computed from regressions of the libration angles of the observations against the lunar radiances. Decaying exponential functions of time are fit to the geometry-corrected calibration time series. The observations for bands 1,2, and 5-8 are fit to two simultaneous exponential functions of time, while bands 3 and 4 are fit to single exponential functions of time. The corrections to the radiometric response of the instrument over time are the inverses of these fits. The lunar calibration methodology provides top-of-the-atmosphere radiances for SeaWiFS that are stable to better than 0.07% over the course of the mission, with residual time drifts that are smaller than -0.004% per thousand days. The resulting water-leaving radiances are stable to better than 0.7%, allowing the Project to implement a vicarious calibration of the water-leaving radiances that is independent of time. The calibration methodology presented here will be used to generate the calibration table for the fifth reprocessing of the SeaWiFS global ocean data set.
机译:SeaWiFS项目使用月度月度校准来监视SeaWiFS在其任务过程中在轨辐射的稳定性。持续增加的月球校准数据集的持续分析导致了校准方法的不断改进。必须将月球测量值标准化为校准时间序列的通用观察几何形状,以跟踪仪器的辐射稳定性,根据观测时间和几何形状计算出的校正值包括太阳-月亮和仪器-月亮的距离,月球图像的过采样以及月相角的变化。该项目最近实施了对月球解放的校正,该校正是通过观测的解放角相对于月球辐射度的回归来计算的。时间的衰减指数函数适合于几何校正的校准时间序列。波段1,2和5-8的观测值适合于两个同时的时间指数函数,而波段3和4的观测值适合于单个时间的指数函数。仪器的辐射响应随时间的校正是这些拟合的倒数。月球校准方法为SeaWiFS提供了最高的大气辐射度,在整个任务过程中稳定在0.07%以上,且剩余时间漂移小于每千天-0.004%。所产生的出水辐射率稳定在0.7%以上,从而使该项目能够对出水辐射率进行替代校准,该校准与时间无关。此处介绍的校准方法将用于生成校准表,以对SeaWiFS全球海洋数据集进行第五次重新处理。

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