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Soil moisture and vegetation biomass retrievals using L band, dual polarised and multi angular radiometric data in preparation of the SMOS mission

机译:利用L波段,双极化和多角度辐射数据收集土壤水分和植被生物量,以准备SMOS任务

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The 2D L-band interferometer radiometer on board SMOS (Soil Moisture and Ocean Salinity) is based on an innovative bi-dimensional aperture synthesis concept. The sensor has new and very significant capabilities, especially in terms of multi-angular viewing configuration. In this study, the retrieval capabilities of SMOS, based on the actual system configuration have been assessed. From model simulations, the uncertainities on the retrieved variables is computed as a function of the uncertainties associated with both remotely sensed data (radiometric sensitivity /spl Delta/T, systematic bias) and model input parameters (errors are accounted for in the estimates of surface temperature and vegetation optical thickness, if one- or two-parameter retrievals are carried out). The simulations are performed using the /spl tau/-/spl omega/ approach, which provides accurate simulations of the passive microwave signature of the land surface at L-band. This study shows how and why the 2D interferometry concept, applied to Earth remote sensing from space, may bring a major qualitative improvement, thanks to the ability to obtain many data over a significant range of viewing angles. SMOS is the first mission which aims at demonstrating and using this feature. From the results of this study, promising retrieval capabilities can be expected from SMOS over the land surface.
机译:SMOS上的2D L波段干涉仪辐射计(土壤水分和海洋盐度)基于创新的二维孔径合成概念。该传感器具有新的非常重要的功能,尤其是在多角度查看配置方面。在本研究中,已经评估了基于实际系统配置的SMOS的检索功能。从模型模拟中,将检索变量的不确定性计算为与遥感数据(辐射灵敏度/ spl Delta / T,系统偏差)和模型输入参数(误差在地面估计中均已考虑)相关的不确定性的函数温度和植被光学厚度(如果执行一参数或两参数检索)。使用/ spl tau /-/ spl omega /方法执行模拟,该方法可精确模拟L波段陆地表面的无源微波信号。这项研究表明,由于能够在很大的视角范围内获取许多数据,因此将2D干涉术概念应用于太空从太空遥感的方式和方式可能会带来重大的质量改进。 SMOS是旨在演示和使用此功能的第一个任务。根据这项研究的结果,可以期望从地面上的SMOS获得有希望的检索功能。

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