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NASA-ISRO Synthetic Aperture Radar: Science Applications

机译:NASA-ISRO合成孔径雷达:科学与应用

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NASA-ISRO Synthetic Aperture Radar (NISAR), a novel SAR concept will be utilized to image wide swath at high resolution of stripmap SAR. It will have observations in L- and S-bands to understand highly spatial and temporally complex processes such as ecosystem disturbances, ice sheet changes, and natural hazards including earthquakes, tsunamis, volcanoes, and landslides. NISAR with several advanced features such as 12 days interferometric orbit, achievement of high resolution and wide swath images through SweepSAR technology and simultaneous data acquisition in dual frequency would support a host of applications. The primary objectives of NISAR are to monitor ecosystems including monitoring changes in ecosystem structure and biomass estimation, carbon flux monitoring; mangroves and wetlands characterization; alpine forest characterization and delineation of tree-line ecotone, land surface deformation including measurement of deformation due to co-seismic and inter-seismic activities; landslides; land subsidence and volcanic deformation, cryosphere studies including measurements of dynamics of polar ice sheet, ice discharge to the ocean, Himalayan snow and glacier dynamics, deep and coastal ocean studies including retrieval of ocean parameters, mapping of coastal erosion and shore-line change; demarcation of high tide line (HTL) and low tide line (LTL) for coastal regulation zones (CRZ) mapping, geological studies including mapping of structural and lithological features; lineaments and paleo-channels; geo-morphological mapping, natural disaster response including mapping and monitoring of floods, forest fires, oil spills, earthquake damage and monitoring of extreme weather events such as cyclones. In addition to the above, NISAR would support various other applications such as enhanced crop monitoring, soil moisture estimation, urban area development, weather and hydrological forecasting.
机译:NASA-ISRO合成孔径雷达(NISAR),一种新颖的SAR概念,将用于以条形图SAR的高分辨率对宽幅成像。它将在L波段和S波段进行观测,以了解高度时空复杂的过程,例如生态系统扰动,冰盖变化以及包括地震,海啸,火山和滑坡在内的自然灾害。 NISAR具有多种先进功能,例如12天干涉测量轨道,通过SweepSAR技术实现高分辨率和宽幅图像以及双频同时数据采集将支持许多应用。 NISAR的主要目标是监测生态系统,包括监测生态系统结构的变化和生物量估计,碳通量监测;以及红树林和湿地的特征;高山森林的特征和树线过渡带的划分,土地表面变形,包括因同震和间震活动引起的变形的测量;滑坡陆地沉降和火山变形,冰冻圈研究,包括测量极地冰盖的动力学,向海洋的冰排放,喜马拉雅雪和冰川动力学;深海和沿海海洋研究,包括获取海洋参数,绘制海岸侵蚀和海岸线变化图;划定沿海调节区(CRZ)的高潮线(HTL)和低潮线(LTL),进行地质研究,包括绘制结构和岩性特征;谱系和古河道;地貌图绘制,自然灾害响应(包括洪水,森林火灾,漏油,地震破坏的绘制和监视以及旋风等极端天气事件的监视)。除上述内容外,NISAR还支持其他各种应用程序,例如增强作物监测,土壤湿度估算,市区发展,天气和水文预报。

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