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ATLID, ESA atmospheric backscatter LIDAR for the ESA EarthCARE mission

机译:Atlid,ESA大气反向散射LIDAR为ESA Earthcare Mission

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摘要

The ATmospheric LIDAR (Light Detection and Ranging), ATLID, is part of the payload of the Earth Cloud, Aerosol and Radiation Explorer (EarthCARE) mission, the sixth Earth Explorer Mission of the European Space Agency (ESA) Living Planet Programme (http://esamu ltime dia.esa.int/docs/SP_1279_1_Earth CARE.pdf). The EarthCARE payload consists of four instruments that will, in a synergetic manner, retrieve vertical profiles of clouds and aerosols, and the characteristics of the radiative and micro-physical properties, to determine flux gradients within the atmosphere and top of atmosphere radiance and flux. ATLID’s task is to provide vertical profiles of optically thin cloud and aerosol layers, as well as the altitude of cloud boundaries. With that purpose ATLID emits < 35 ns duration laser pulses with 40 mJ energy in the UV, at a repetition rate of 51 Hz, while pointing in a near nadir direction along track of the satellite trajectory. The backscatter signal is collected by a 620 mm aperture telescope and is then filtered and redirected through the optics of the instrument focal plane assembly, in such a way that the atmospheric Mie and Rayleigh scattering contributions are separated and independently measured. After the manufacturing, qualification and delivery of all ATLID units, the optical and electrical integration has been conducted in parallel to assemble the Optical Flight Model (OFM) and the Electrical Flight Model (EFM). These two models, precursor to the instrument integration, allowed the early execution of the first performance and functional tests. Following these initial verification activities, and with the latest integration of the flight laser cooling system, the instrument assembly approaches its final flight configuration, paving the way for the ambient performance and environmental test campaigns at full instrument level.
机译:大气激光器(光检测和测距),ATLID是地球云,气溶胶和辐射探险家(RealtCare)任务的一部分,欧洲航天局(ESA)生活星球计划的第六届地球探索者使命(http: // esamu ltime dia.esa.int/docs/sp_1279_1_earth care.pdf)。 RealtCare有效载荷由四个仪器组成,以协调方式,检索云和气溶胶的垂直型材以及辐射和微物理性质的特征,以确定大气中的磁通梯度和大气辐射和助焊剂的顶部。 ATLID的任务是提供光学薄云和气溶胶层的垂直简介,以及云边界的高度。利用该目的,用51Hz的重复率在UV中具有45 nS持续时间激光脉冲,在51Hz的重复速率下,同时沿着卫星轨迹轨道指向近Nadir方向。反向散射信号由620mm孔径望远镜收集,然后通过仪器焦平面组件的光学器件过滤并重定向,以使大气MIE和瑞利散射贡献分离并独立地测量。在制造,鉴定和递送所有ATLID单位之后,光学和电气集成并行地进行,以组装光学飞行模型(OFM)和电飞行模型(EFM)。这两种模型,仪器集成的前兆允许早期执行第一个性能和功能测试。在这些初始验证活动之后,并且随着飞行激光冷却系统的最新集成,仪器组装接近其最终的飞行配置,为全面仪器级别的环境性能和环境测试活动铺平了道路。

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