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Development status of the EarthCARE mission and its Atmospheric Lidar

机译:地震使命及其大气激光器的发展现状

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The European Space Agency (ESA) and the Japan Aerospace Exploration Agency (JAXA) are co-operating to develop as part of ESA's Living Planet Programme, the third Earth Explorer Core Mission, EarthCARE, with the fundamental objective of improving the understanding of the processes involving clouds, aerosols and radiation in the Earth's atmosphere. EarthCARE payload consists of two active and two passive instruments: an ATmospheric LIDar (ATLID), a Cloud Profiling Radar (CPR), a Multi-Spectral Imager (MSI) and a Broad-Band Radiometer (BBR). The four instruments data are processed individually and in a synergetic manner to produce a large range of products, which include vertical profiles of aerosols, liquid water and ice, observations of cloud distribution and vertical motion within clouds, and will allow the retrieval of profiles of atmospheric radiative heating and cooling. Operating in the UV range at 355 ran, ATLID provides atmospheric echoes with a vertical resolution up to 100 m from ground to an altitude of 40 km. Thanks to a high spectral resolution filtering, the lidar is able to separate the relative contribution of aerosol (Mie) and molecular (Rayleigh) scattering, which gives access to aerosol optical depth. Co-polarised and cross-polarised components of the Mie scattering contribution are also separated and measured on dedicated channels. This paper gives an overview of the mission science objective, the satellite configuration with its four instruments and details more specifically the implementation and development status of the Atmospheric Lidar. Manufacturing status and first equipment qualification test results, in particular for what concerns the laser transmitter development are presented.
机译:欧洲航天局(ESA)和日本航空航天勘探机构(JAXA)是作为ESA的一部分成为ESA的生活星球计划,第三大探险家核心使命,田径的基本目标,以及改善对流程的理解的基本目标涉及地球大气层中的云,气溶胶和辐射。 RealtCare有效载荷由两个主动和两个被动仪器组成:大气激光器(ATLID),云分析雷达(CPR),多光谱成像器(MSI)和宽带辐射计(BBR)。四个仪器数据是单独处理的,并以协同的方式处理,以产生大量产品,包括气溶胶,液体水和冰的垂直曲线,云分布观察和云中的垂直运动,并允许检索曲线大气辐射加热和冷却。在紫外线范围内运行355 RAN,ATLID提供大气回波,垂直分辨率高达100米,到高度为40公里。由于高光谱分辨率滤波,LIDAR能够分离气溶胶(MIE)和分子(Rayleigh)散射的相对贡献,这可以访问气溶胶光学深度。在专用通道上也分离并测量MIE散射贡献的共偏振和交叉极化部件。本文概述了使命科学目标,卫星配置,其四种仪器和细节更具体地说,更具体地说是大气激光器的实施和开发状态。制造地位和第一设备资格测试结果,特别是对于激光发射器开发的涉及涉及的问题。

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