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ALADIN Airborne Demonstrator: a Doppler Wind Lidar to prepare ESA's ADM-Aeolus Explorer Mission

机译:ALADIN机载示威者:多普勒风激光雷达,用于准备ESA的ADM-风神探索者任务

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The Atmospheric Dynamics/Aeolus mission is the 4th Earth Explorer mission of the Earth Observation Explorer Programme of the European Space Agency (ES A). Its objective is to measure vertical tropospheric profiles of horizontal wind speed components. These global observations of wind profiles from space will improve the quality of weather forecasts and advance our understanding of atmospheric dynamics and climate processes. The 1.3-ton, 1.4-kW Aeolus spacecraft uses an incoherent Doppler Wind lidar (ALADIN) to measure wind speed. It uses a tripled-frequency Nd:YAG laser emitting ultraviolet pulses at a repetition rate of 100 Hz, during a measurement period of 7 sec repeated every 28 sec. The return signal is detected with a double interferometric receiver composed of a Fizeau interferometer to detect the Mie signal scattered by aerosols and a double-edge Fabry-Perot interferometer to detect the Rayleigh signal scattered by atmospheric molecules. A custom-made accumulation CCD is used to detect and integrate the return photons over several laser pulses. The spacecraft has recently passed the CDR level and launch is planned for 2008. An airborne version of the ALADIN instrument has been made with equipment developed during the pre-development phase of the mission. An interferometric receiver with a high-level of representativity to the space receiver and a laser transmitter breadboard have been refurbished and complemented with a telescope, a co-alignment mechanism and custom control and processing electronics to produce the first airborne, direct-detection Doppler Wind lidar worldwide. The lidar was functionally tested in flight in October 2005 and will be used in ground and airborne campaigns in 2006 and 2007 to prepare the exploitation of the Aeolus space mission.
机译:大气动力学/风神任务是欧洲航天局(ES A)的地球观测探索者计划的第四个地球探索者任务。其目的是测量水平风速分量的垂直对流层剖面。这些对太空风廓线的全球观测将改善天气预报的质量,并增进我们对大气动力学和气候过程的理解。这艘重达1.3吨,1.4千瓦的Aeolus航天器使用非相干多普勒测风激光雷达(ALADIN)来测量风速。它使用三倍频Nd:YAG激光,在每28秒重复7秒的测量周期内,以100 Hz的重复频率发射紫外脉冲。返回信号由双干涉仪接收器检测,该双干涉仪接收器由Fizeau干涉仪组成,以检测由气溶胶散射的Mie信号;由双边缘Fabry-Perot干涉仪组成,以检测由大气分子散射的瑞利信号。定制的累积CCD用于检测和积分多个激光脉冲上的返回光子。该航天器最近已通过CDR级别,计划于2008年发射。该航天器的ALADIN仪器已经制成,其飞行任务是在飞行任务的预开发阶段开发的。翻新了对空间接收器具有高代表性的干涉式接收器和激光发射器面包板,并补充了望远镜,共对准机制以及定制的控制和处理电子设备,以生产出第一架机载直接检测的多普勒风全球激光雷达。激光雷达已于2005年10月在飞行中进行了功能测试,并将在2006年和2007年用于地面和空运战役,以准备对Aeolus太空飞行任务的开发。

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