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Spaceborne altimetry and scatterometry backscattering coefficients at C- and Ku-band over West Africa

机译:在西非的C-和Ku-Band的星级载体高度和散射仪反向散射系数

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This study presents a comprehensive comparison of radar signatures acquired over West-Africa at both Ku- and C- bands using nadir-looking altimeters and side-looking scatterometers that covers the major bioclimatic zones, soil and vegetation types encountered in this region. The backscattering coefficients time series measured by both radar instruments are generated over regional transects and local sites. Meridian transects from the wet tropics to the arid regions of the Sahara desert point out the spatial and temporal changes of the radar response over the West-African bioclimatic gradient in terms of surface roughness, land cover and soil wetness. Nadir looking altimetry appears more sensitive to variations of surface soil moisture than side-looking scatterometry at both C- and Ku-bands. In contrast, the impact of vegetation on the backscattered signals is found to be lower for nadir-looking instruments compared to side-looking ones.
机译:本研究介绍了使用Nadir的高度仪和侧视散射仪在KU和C-频段上获得的雷达签名的全面比较,覆盖该地区主要的生物恐星区,土壤和植被类型的侧视散射仪。 通过雷达仪器测量的反向散射系数时间序列在区域横断面和本地位点产生。 经络从湿热带横断撒哈拉沙漠的干旱地区,指出了在表面粗糙度,陆地覆盖和土壤湿度方面的雷达响应的空间和时间变化。 Nadir看起来的Altimetry对表面土壤湿度的变化看起来比C-和Ku带的侧视散射测量更敏感。 相比之下,与侧面看的仪器相比,Nadir看乐器的植被对反向散射信号的影响是较低的。

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