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The Flexible Combined Imager on board MTG: from design to calibration

机译:MTG上的灵活组合成像仪:从设计到校准

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The Meteosat Third Generation (MTG) Programme is being realised through the well-established and successful cooperation between EUMETSAT and ESA. It will ensure the continuity with, and enhancement of, operational meteorological and climate data from Geostationary Orbit as currently provided by the Meteosat Second Generation (MSG) system. The industrial Prime Contractor for the Space segment is Thales Alenia Space (France) with a core team consortium including OHB-Bremen (Germany) and OHB-Munich (Germany. This contract includes the provision of six satellites, four Imaging satellites (MTG-I) and two Sounding satellites (MTG-S), which will ensure a total operational life of the MTG system in excess of 20 years. A clear technical baseline has been established for both MTG-I and MTG-S satellites, and confirmed through a rigorous Preliminary Design Review (PDR) process that was formally concluded during 2013. Dedicated reviews have been held for all the main elements including the core instruments (Flexible Combined Imager (FCI) and Infrared Sounder (IRS)), the Platform (which is largely common for the two satellites), the Lightning Imager (LI) and the MTG-I and MTG-S satellites as a whole. The satellites and instruments are at the moment in preparation for the Structural and Thermal Models (STM). The FCI is designed to provide images of the Earth every 10 to 2.5 minutes in 16 spectral channels between 0.44 and 13.3 μm, with a ground resolution ranging from 0.5 km to 2 km. The on-board calibration is based on the use of a Metallic Neutral Density (MND) filter for VIS/NIR channels and a blackbody for the IR channels. This paper introduces the overall FCI design and its calibration concept covering VIS/NIR and IR domains and it describes how the use of the MND makes it possible to accurately correct the medium and long term radiometric drifts of the IR3.8 μm channel.
机译:Meteosat第三代(MTG)计划是通过EUMETSAT与ESA之间建立并成功的合作而实现的。它将确保气象卫星第二代(MSG)系统当前提供的对地静止轨道业务气象和气候数据的连续性,并增强其数据。航天领域的工业主要承包商是Thales Alenia Space(法国),其核心团队包括OHB-Bremen(德国)和OHB-Munich(德国)。该合同包括提供六颗卫星,四颗成像卫星(MTG-I)。 )和两颗探测卫星(MTG-S),它们将确保MTG系统的总运行寿命超过20年。MTG-I和MTG-S卫星均已建立了明确的技术基准,并已通过严格的初步设计审查(PDR)过程于2013年正式结束。针对所有主要要素进行了专门审查,包括核心仪器(柔性组合成像仪(FCI)和红外测深仪(IRS)),平台(在很大程度上这两种卫星是通用的),也就是闪电成像器(LI)以及整个MTG-I和MTG-S卫星,目前这些卫星和仪器正在为结构模型和热模型(STM)做准备。专为专业人士在0.44至13.3μm之间的16个光谱通道中,每10至2.5分钟拍摄一次地球图像,地面分辨率范围为0.5 km至2 km。车载校准基于对VIS / NIR通道使用金属中性密度(MND)滤镜和对IR通道使用黑体的方法。本文介绍了整个FCI设计及其涵盖VIS / NIR和IR域的校准概念,并描述了MND的使用如何准确校正IR3.8μm通道的中长期辐射漂移。

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