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Dielectric Constant Modelling with Soil–Air Composition and Its Effect on Sar Radar Signal Backscattered over Soil Surface

机译:土壤-空气成分的介电常数建模及其对Sar雷达信号在土壤表面反向散射的影响

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摘要

The objective of this paper is to present the contribution of a new dielectric constant characterisation for the modelling of radar backscattering behaviour. Our analysis is based on a large number of radar measurements acquired during different experimental campaigns (Orgeval'94, Pays de Caux'98, 99). We propose a dielectric constant model, based on the combination of contributions from both soil and air fractions. This modelling clearly reveals the joint influence of the air and soil phases, in backscattering measurements over rough surfaces with large clods. A relationship is established between the soil fraction and soil roughness, using the Integral Equation Model (IEM), fitted to real radar data. Finally, the influence of the air fraction on the linear relationship between moisture and the backscattered radar signal is discussed.
机译:本文的目的是提出一种新的介电常数表征对雷达反向散射行为建模的贡献。我们的分析基于在不同实验活动中获得的大量雷达测量结果(Orgeval'94,Pays de Caux'98,99)。我们基于土壤和空气成分的贡献,提出了介电常数模型。该模型清楚地揭示了在大块土块的粗糙表面上进行反向散射测量时,空气和土壤相的共同影响。使用适合实际雷达数据的积分方程模型(IEM),可以在土壤分数和土壤粗糙度之间建立关系。最后,讨论了空气分数对水分与雷达后向散射信号之间线性关系的影响。

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