首页> 外文会议>Geoscience and Remote Sensing Symposium, 1996. IGARSS '96. 'Remote Sensing for a Sustainable Future.', International >Development and present configuration of the NASA GSFC/WFF helicopter-based remote sensing system
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Development and present configuration of the NASA GSFC/WFF helicopter-based remote sensing system

机译:基于NASA GSFC / WFF直升机的遥感系统的开发和当前配置

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There is a need for calibrated remote sensing data from airborne platforms emphasizing the spatial, spectral, temporal, bidirectional and polarization information domains. A system developed by NASA Goddard Space Flight Center and Wallops Flight Facility utilizing a helicopter as the platform has proven to be a versatile means of acquiring such data. As the system evolved, it was used for the acquisition of data supporting field measurement campaigns such as an acid deposition effects study, the First International Satellite Land Surface Climatology Project (ISLSCP) Field Experiment (FIFE), the Forest Ecosystems Dynamics Project (FED), and the BOReal Ecosystem Atmosphere Study (BOREAS) among others. The data collected with the helicopter system have been used to develop relationships between vegetative parameters and remotely sensed measurements, validate atmosphere and vegetation models, address scaling issues, and provide low altitude data for instrument calibration studies. Off-the-shelf field and experimental instrumentation have been flown as part of the system. Most recently, gyro-stabilized, pointable mounts and an automatic sun-tracking sun photometer were specifically designed and fabricated for the system. The stages of development of the helicopter system over a twelve year period are described and illustrate the advantages and limitations afforded to investigators using helicopter-based systems.
机译:需要来自机载平台的校准的遥感数据,其强调空间,光谱,时间,双向和极化信息域。由美国国家航空航天局戈达德太空飞行中心和瓦洛普斯飞行设施使用直升机作为平台开发的系统已被证明是获取此类数据的通用手段。随着系统的发展,它被用于采集支持野外测量活动的数据,例如酸沉降效应研究,首个国际卫星陆地表面气候学项目(ISLSCP)野外实验(FIFE),森林生态系统动力学项目(FED) ,以及BOReal生态系统大气研究(BOREAS)等。直升机系统收集的数据已用于开发营养参数与遥感测量值之间的关系,验证大气和植被模型,解决结垢问题,并为仪器校准研究提供低空数据。作为系统的一部分,已经有现货供应的现场和实验仪器。最近,专门为该系统设计并制造了陀螺仪稳定的,可指示的底座和自动跟踪太阳的太阳光度计。描述了直升机系统在十二年内的发展阶段,并说明了使用基于直升机的系统给研究人员带来的优势和局限性。

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