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Impact of Surface Soil Moisture Variations on Radar Altimetry Echoes at Ku and Ka Bands in Semi-Arid Areas

机译:半干旱地区对雷达高偏移回波雷达高度回波的影响

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摘要

Radar altimetry provides information on the topography of the Earth surface. It is commonly used for the monitoring not only sea surface height but also ice sheets topography and inland water levels. The radar altimetry backscattering coefficient, which depends on surface roughness and water content, can be related to surface properties such as surface soil moisture content. In this study, the influence of surface soil moisture on the radar altimetry echo and backscattering coefficient is analyzed over semi-arid areas. A semi-empirical model of the soil’s complex dielectric permittivity that takes into account that small-scale roughness and large-scale topography was developed to simulate the radar echoes. It was validated using waveforms acquired at Ku and Ka-bands by ENVISAT RA-2 and SARAL AltiKa respectively over several sites in Mali. Correlation coefficients ranging from 0.66 to 0.94 at Ku-band and from 0.27 to 0.96 at Ka-band were found. The increase in surface soil moisture from 0.02 to 0.4 (i.e., the typical range of variations in semi-arid areas) increase the backscattering from 10 to 15 dB between the core of the dry and the maximum of the rainy seasons.
机译:雷达Altimetry提供有关地球表面的地形的信息。它通常用于监测不仅海表面高度,还用于冰盖地形和内陆水平。雷达高度反向散射系数,其取决于表面粗糙度和水含量,可以与表面性质如表面土壤水分含量有关。在这项研究中,在半干旱地区分析了表面土壤水分对雷达高度回波和反向散射系数的影响。土壤的复介电常数的半经验模型,该模型考虑到小规模的粗糙度和大型地形的开发是为了模拟雷达回波。通过在马里的几个站点上,使用Envisat Ra-2和Saral Altika获得的Ku和Ka波段的波形进行了验证。发现在Ku波段的0.66至0.94和在KA波段的相关系数范围为0.66至0.94。为0.02至0.4在表层土壤水分的增加(即,在半干旱地区变化的典型范围)增加从10反向散射到15dB干的所述芯和所述最大的雨季之间。

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