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Contribution of Small-Scale Correlated Fluctuations of Microstructural Properties of a Spatially Extended Geophysical Target Under the Assessment of Radar Backscatter

机译:雷达反向散射评估下空间扩展地球物理目标微观结构特性的小尺度相关涨落

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摘要

The study of the collective effects of radar scattering from an aggregation of discrete scatterers randomly distributed in a space is important for better understanding the origin of the backscatter from spatially extended geophysical targets (SEGT). We consider the microstructure irregularities of a SEGT as the essential factor that affect radar backscatter. To evaluate their contribution this study uses the "slice" approach: particles close to the front of incident radar wave are considered to reflect incident electromagnetic wave coherently. The radar equation for a SEGT is derived. The equation includes contributions to the total backscatter from correlated small-scale fluctuations of the slice's reflectivity. The correlation contribution changes in accordance with an earlier proposed idea by Smith (1964) based on physical consideration. The slice approach applied allows parameterizing the features of the SEGT's inhomogeneities.
机译:研究从空间中随机分布的离散散射体聚集而来的雷达散射的集体效应,对于更好地了解来自空间扩展地球物理目标(SEGT)的反向散射的起源非常重要。我们认为SEGT的微观结构不规则是影响雷达反向散射的必要因素。为了评估其贡献,本研究使用“切片”方法:靠近入射雷达波前部的粒子被认为可以连贯地反射入射电磁波。推导了SEGT的雷达方程。该方程式包括切片反射率的相关小范围波动对总反向散射的贡献。相关贡献根据史密斯(Smith,1964)基于物理考虑的较早提出的想法而变化。应用的切片方法可以参数化SEGT不均匀性的特征。

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    Yurchak, Boris S.;

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  • 年度 2010
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