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Comparison of SeaWiFS measurements of the Moon with the U.S. Geological Survey lunar model

机译:月球的SeaWiFS测量与美国地质调查局月球模型的比较

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摘要

The Sea-Viewing Wide-Field-of-View Sensor (SeaWiFS) has made monthly observations of the Moon since 1997. Using 66 monthly measurements, the SeaWiFS calibration team has developed a correction for the instrument's on-orbit response changes. Concurrently, a lunar irradiance model has been developed by the U.S. Geological Survey (USGS) from extensive Earth-based observations of the Moon. The lunar irradiances measured by SeaWiFS are compared with the USGS model. The comparison shows essentially identical response histories for SeaWiFS, with differences from the model of less than 0.05% per thousand days in the long-term trends. From the SeaWiFS experience we have learned that it is important to view the entire lunar image at a constant phase angle from measurement to measurement and to understand, as best as possible, the size of each lunar image. However, a constant phase angle is not required for using the USGS model. With a long-term satellite lunar data set it is possible to determine instrument changes at a quality level approximating that from the USGS lunar model. However, early in a mission, when the dependence on factors such as phase and libration cannot be adequately determined from satellite measurements alone, the USGS model is critical to an understanding of trends in instruments that use the Moon for calibration. This is the case for SeaWiFS.
机译:自1997年以来,海景宽视场传感器(SeaWiFS)每月进行一次月球观测。SeaWiFS校准团队使用66个月度测量数据,对仪器在轨响应变化进行了校正。同时,美国地质调查局(USGS)根据月球在地球上的大量观测结果开发了月球辐照度模型。将SeaWiFS测量的月球辐照度与USGS模型进行比较。比较结果显示,SeaWiFS的响应历史记录基本相同,在长期趋势中与模型的差异为每千日小于0.05%。从SeaWiFS的经验中,我们了解到,从测量到测量,以恒定的相位角查看整个月球图像,并尽可能最好地了解每个月球图像的大小非常重要。但是,使用USGS模型不需要恒定的相角。有了长期的卫星月球数据集,就可以确定质量与USGS月球模型相近的仪器变化。但是,在执行任务的初期,仅靠卫星测量无法充分确定对相位和自由度等因素的依赖时,USGS模型对于了解使用月球进行校准的仪器的趋势至关重要。 SeaWiFS就是这种情况。

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