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Vicarious Calibration of the Multi-Viewing -Channel -Polarisation Imager (3MI) of the EUMETSAT Polar System - Second Generation (EPS-SG)

机译:第二代EUMETSAT极地系统的多视场偏振成像仪(3MI)的替代性校准

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The Multi-Viewing -Channel -Polarization Imager (3MI), planned to fly on the Metop-SG satellite as part of the EPS-SG programme in the timeframe beyond 2020, is a radiometer dedicated to aerosol and cloud characterization for climate monitoring, atmospheric composition, air quality and numerical weather prediction. The purpose of the 3MI is to provide multi-spectral (12 channels between 410 and 2130 nm), multi-polarization (-60°, 0°, and +60°), and multi-angular (10 to 14 views) images of the Earth top of atmosphere outgoing radiance. 3MI does not have an onboard calibration facility and its radiometric and geometric performance will rely on vicarious calibration. The aim of this paper is to present the state of the art of vicarious calibration methods applicable to 3MI. The 3MI measurement principle is based on the French atmospheric mission PARASOL (Polarization and Anisotropy of Reflectances for Atmospheric Sciences coupled with Observations from a Lidar) heritage. This allows adapting the vicarious calibration methods of the PARASOL mission to the needs of 3MI. However, the monitoring of the SWIR (short wave infrared) channels will be a new challenge for the 3MI calibration as this spectral range was not present on PARASOL. The cross-calibration with other instruments flying on the same satellite will support the calibration of 3MI. Indeed the Metop-SG payload includes two other optical instruments covering the same spectral regions. METimage and Sentinel-5 will both be equipped with on-board calibration capabilities and provide valuable measurements for vicarious calibration of 3MI. Further cross-calibration with Earth observation instruments on other satellites, will be studied.
机译:计划在2020年以后的时间段内作为EPS-SG计划的一部分,计划在Metop-SG卫星上飞行的多视道极化成像仪(3MI)是一种辐射计,专门用于气溶胶和云表征,用于气候监测,大气成分,空气质量和数值天气预报。 3MI的目的是提供多光谱(在410和2130 nm之间有12个通道),多偏振(-60°,0°和+ 60°)和多角度(10至14个视角)图像地球顶部的大气向外辐射。 3MI没有机载校准工具,其辐射度和几何性能将取决于替代校准。本文的目的是介绍适用于3MI的替代校准方法的最新技术水平。 3MI的测量原理基于法国的大气任务PARASOL(大气科学反射率的极化和各向异性以及激光雷达的观测值)遗产。这可以使PARASOL任务的替代校准方法适应3MI的需求。但是,对于3MI校准,SWIR(短波红外)通道的监视将是一个新的挑战,因为PARASOL上不存在该光谱范围。与在同一颗卫星上飞行的其他仪器的交叉校准将支持3MI的校准。实际上,Metop-SG有效载荷还包括其他两个覆盖相同光谱区域的光学仪器。 METimage和Sentinel-5都将配备板载校准功能,并为3MI的替代校准提供有价值的测量。将与其他卫星的地球观测仪器进行进一步的交叉校准。

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