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Calibration pipeline of VIS-NIR imaging spectrometers for planetary exploration: The rosetta VIRTIS-M case

机译:Vis-NIR成像光谱仪进行行星勘探的校准管道:Rosetta Virtis-M情况

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The capability of spaceborne VIS-NIR imaging spectrometers devoted to planetary exploration to acquire valuable scientific datasets largely depends on the accuracy of the calibration pipeline. In this paper we discuss about the method currently used to calibrate the flight data of VIRTISM (Visible InfraRed Thermal Imaging Spectrometer, Mapping Channel) on board the ESA Rosetta mission to comet 67P/Churyumov-Gerasimenko. By using both prelaunch characterization measurements and in-flight observations of well-known astronomical targets (acquired during two flybys of the Earth and one of Mars), we have built a pipeline able to convert raw engineering units (DN/s) in physical units (spectral radiance Wm−2µm−1sr−1 or reflectance I/F). This methodology and the resulting scientific data are discussed in detail.
机译:致力于行星勘探的空间传感Vis-niR成像的能力在很大程度上取决于校准管道的准确性。在本文中,我们讨论了目前用于校准艺术纪念(可见红外热成像光谱仪,映射通道)的飞行数据的方法,以便在ESA Rosetta Mission彗星67P / Churyumov-Gerasimenko上。通过使用众所周知的天文目标的前预振特征测量和飞行方式观察(在地球的两个鹅卵石和火星之一获得),我们建立了一个能够在物理单元中转换原始工程单位(DN / S)的管道(光谱辐射WM -2 μm -1 sr -1 或反射率I / f)。该方法和所得到的科学数据详细讨论。

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