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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Multiangle Backscattering Observations of Continental Surfaces in Ku-Band (13 GHz) From Satellites: Understanding the Signals, Particularly in Arid Regions
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Multiangle Backscattering Observations of Continental Surfaces in Ku-Band (13 GHz) From Satellites: Understanding the Signals, Particularly in Arid Regions

机译:卫星对Ku波段(13 GHz)大陆表面的多角度反向散射观测:了解信号,特别是在干旱地区

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摘要

Backscattering in Ku-band (13 GHz) over continental surfaces is analyzed, with the Tropical Rainfall Measurement Mission/Precipitation Radar instruments (incidence angles from 0 $^{circ}$ to 18 $^{circ}$), along with observations from the Topex–Poseidon nadir-looking altimeter and the QuikSCAT scatterometer (incidence angles around 50 $^{circ}$). The signals from the three instruments are very consistent. The backscattering tends to decrease with increasing vegetation density, as expected, making it possible to classify vegetation density with active microwaves. Over the northern African desert, a very large spatial variability of the backscattering is observed, with both surface and volume scatterings contributing to the signals. The use of multiangle observations does help characterizing the desert types, but in some areas, the ambiguity of the signals is still unexplained. The French–Chinese joint mission “Chinese–French Oceanic SATellite” will carry two active microwave instruments with a large range of incidence angles, from 0 $^{circ}$ to 50 $^{circ}$. We show that the combined use of observations at low and high incidence angles adds information, particularly over desert surfaces.
机译:使用热带降雨测量任务/降水雷达仪器(入射角从0 $ ^ {circ}起的入射角)分析了大陆表面Ku波段(13 GHz)的反向散射$ 到18 $ ^ {circ} $ ),以及来自Topex–Poseidon最低点的高度计和QuikSCAT散射仪的观测结果(入射角约50 $ ^ {circ} $ )。三种仪器的信号非常一致。如预期的那样,背向散射趋于随着植被密度的增加而减小,从而有可能利用有源微波对植被密度进行分类。在北非沙漠上空,观察到反向散射的空间变异性非常大,表面散射和体积散射均对信号产生影响。多角度观测的使用确实有助于表征沙漠的类型,但在某些地区,信号的模糊性仍无法解释。法中联合任务“中法海洋卫星”将携带两套有源微波仪器,入射角范围大,从0 $ ^ {circ} $ 到50 $ ^ {circ} $ 。我们表明,低入射角和高入射角的观测值的组合使用可以增加信息,尤其是在沙漠表面。

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