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Precipitation signature on side-looking aperture radar imaging: Sensitivity analysis to surface effects at C, X and Ku band

机译:侧视孔径雷达成像上的降水特征:对C,X和Ku波段表面效应的敏感性分析

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Previous studies have shown the potentiality of X-band synthetic aperture radar in measuring rainfall. A microwave forward model describes the Normalized Radar Cross Section (NRCS) as composed by a surface contribution and a volumetric contribution and inversion techniques were used to derive the precipitation over land, particularly over bare soil. However, different surfaces may affect the SAR precipitation signature, so here, we present a sensitivity analysis to the surface effects for three different frequencies such as C-, X- and Ku-band using a two-layer precipitating cloud system composed by rain and snow. Particular attention is given to the effects of sea surface whose variability is strongly related to the surface winds. The main results show that as the frequency increases, the NRCS increases. Moreover, when the wind speed becomes higher, the SAR response due to precipitation is mainly influenced by the surface contribution so that the sensibility to precipitating cloud decreases. This behaviour can be ascribed to the increasing sea surface roughness.
机译:先前的研究表明X波段合成孔径雷达在测量降雨中的潜力。微波前向模型描述了归一化雷达横截面(NRCS),由地面贡献,体积贡献和反演技术组成,用于得出陆地(特别是裸土)上的降水。但是,不同的表面可能会影响SAR降水特征,因此在此,我们使用由雨水和雨水组成的两层降水云系统,对三种不同频率(例如C波段,X波段和Ku波段)的表面效应进行敏感性分析。雪。特别注意海面的影响,其变化性与地表风强烈相关。主要结果表明,随着频率的增加,NRCS也随之增加。此外,当风速变高时,由于降水引起的SAR响应主要受地表影响,从而使沉淀云的敏感性降低。这种现象可以归因于海面粗糙度的增加。

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