Fougnie Bertrand, Bracco Guillaume, Lafrance Bruno, Ruffel Caroline, Hagolle Olivier, Tinel Claire
Centre National d'Etudes Spatiales, 18 avenue E. Belin, 31401 Cedex 9, Toulouse, France.
Appl Opt. 2007 Aug 1;46(22):5435-51. doi: 10.1364/ao.46.005435.
Since 18 December 2004, the PARASOL satellite is a member of the so-called A-train atmospheric orbital observatory, flying together with Aqua, Aura, CALIPSO, CLOUDSAT, and OCO satellites. These satellites combine for the first time a full suite of instruments for observing aerosols and clouds, using passive radiometer complementarily with active lidar and radar sounders. The PARASOL payload is extensively derived from the instrument developed for the POLDER programs that performs measurements of bidirectionality and polarization for a very wide field-of-view and for a visible/near-infrared spectral range. An overview of the results obtained during the commissioning phase and the reevaluation after one year in orbit is presented. In-flight calibration methods are briefly described, and radiometric and geometric performances are both evaluated. All algorithms are based on a panel of methods using mainly natural targets previously developed for POLDER missions and adapted or redeveloped in the PARASOL context. Regarding performances, all mission requirements are met except for band 443 (not recommended for use). After one year in orbit, a perfect geometrical stability was found while a slight decrease of the radiometric sensitivity was observed and corrected through an innovative multitemporal algorithm based on observations of bright and scattered convective clouds. The scientific exploitation of PARASOL has now begun, particularly by coupling these specific observations with other A-train sensor measurements.
自2004年12月18日起,PARASOL卫星成为所谓的A列车大气轨道天文台的一员,与Aqua、Aura、CALIPSO、CLOUDSAT和OCO卫星一同飞行。这些卫星首次组合了一整套用于观测气溶胶和云层的仪器,将被动辐射计与主动激光雷达和雷达探测仪互补使用。PARASOL的有效载荷很大程度上源自为POLDER计划开发的仪器,该仪器可在非常宽的视场和可见/近红外光谱范围内进行双向性和偏振测量。本文介绍了调试阶段获得的结果以及在轨运行一年后的重新评估情况。简要描述了飞行中校准方法,并对辐射测量和几何性能进行了评估。所有算法均基于一组主要使用先前为POLDER任务开发的自然目标的方法,并在PARASOL的背景下进行了调整或重新开发。在性能方面,除了443波段(不建议使用)外,所有任务要求均得到满足。在轨运行一年后,发现几何稳定性极佳,同时观测到辐射灵敏度略有下降,并通过基于明亮和散射对流云观测的创新多时间算法进行了校正。PARASOL的科学利用现已开始,特别是通过将这些特定观测与其他A列车传感器测量相结合。