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Design and performances of MicroCameras and Photometers instruments on TARANIS satellite for an advanced characterization of Transient Luminous Event in the upper atmosphere

机译:TARANIS卫星上的微型相机和光度计仪器的设计和性能,用于高层大气中的瞬时发光事件的高级表征

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The TARANIS mission aims at studying upper atmosphere coupling with a scientific nadir-pointing microsatellite - CNES Myriade family - at a low-altitude orbit (700 km). The main objectives are to measure the occurrence of Transient Luminous Event (TLE), impulsive energetic optical phenomena generated by storms according to recently discovered process, and Terrestrial Gamma-ray Flash (TGF), their emissions and trigger factors. TARANIS instruments are currently in manufacturing, assembly, integration and testing phase. The MicroCameras and Photometers instruments (MCP) are in charge of the remote sensing of the sprites and the lightning in optical wavelengths. MicroCameras instrument [MCP-MC] is an imager in the visible and Photometers instrument [MCP-PH] is a radiometer with four bands from UV to NIR, able to detect TLEs on-board and to trigger the whole payload. The satellite will provide a complete survey of the atmosphere in low resolution together with a high resolution data of sites of interest automatically detected on board. For MC and PH instruments, CEA defined scientific needs and is in charge of processing data and providing scientific results. CNES described the technical requirements of these two instruments and will run in-flight commissioning. Design, manufacturing and testing is under responsibility of Sodern for MicroCameras and Bertin Technologies for Photometers. This article shortly describes physical characteristics of TLEs and presents the final design of these instruments and first measured performances.
机译:TARANIS任务旨在研究低空轨道(700 km)上的高空与科学的指向最低点的微卫星-CNES Myriade系列。主要目标是测量瞬态发光事件(TLE)的发生,由风暴根据最近发现的过程产生的脉冲高能光学现象以及地面伽马射线闪光(TGF),其发射和触发因素。 TARANIS仪器目前处于制造,组装,集成和测试阶段。 MicroCameras和光度计仪器(MCP)负责对小精灵和光学波长中的闪电进行遥感。 MicroCameras仪器[MCP-MC]是可见光中的成像仪,而Photometers仪器[MCP-PH]是具有从UV到NIR的四个波段的辐射计,能够检测机载TLE并触发整个有效载荷。该卫星将以低分辨率提供对大气的完整调查,以及在船上自动检测到的感兴趣地点的高分辨率数据。对于MC和PH仪器,CEA定义了科学需求,并负责处理数据并提供科学结果。 CNES描述了这两种仪器的技术要求,并将在飞行中进行调试。设计,制造和测试由Microcameras的Sodern和光度计的Bertin Technologies负责。本文简要介绍了TLE的物理特性,并介绍了这些仪器的最终设计和首次测得的性能。

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