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Modeling radar scatter from distributed targets using a coupled scatterer approach

机译:使用耦合散射器方法对来自分布式目标的雷达散射进行建模

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Radar remote sensing deals with the extraction of object information from electromagnetic wave parameters. To fully exploit the potential of acquiring quantitative information requires a detailed description of the interaction between microwaves and objects. For practical reasons a simplified approach is preferred where the radar return of a distributed target is modeled as a sum of scatterer echoes. In this paper a point scatterer model is given to simulate scattering of radar waves by distributed targets. The scatterers may have different heights in synthesizing rough surfaces. The principle of conservation of energy is used to account for electromagnetic coupling between the scatterers in function of target sampling density. The predicted coupling between two scatterers is experimentally verified by indoor radar cross section measurements. The model is verified through comparison with numerically solving the electric field integral equation for linear scatterer arrays. Results are given in the form of bistatic scatter diagrams to provide insight in the full scattering behavior.
机译:雷达遥感处理从电磁波参数中提取物体信息。为了充分利用获取定量信息的潜力,需要对微波与物体之间相互作用的详细描述。出于实际原因,在将分布式目标的雷达回波建模为散射回波之和的情况下,首选简化方法。本文提出了一种点散射体模型,以模拟分布式目标对雷达波的散射。在合成粗糙表面时,散射体可以具有不同的高度。能量守恒的原理用于解释散射体之间的电磁耦合,这取决于目标采样密度。通过室内雷达横截面测量,实验验证了两个散射体之间的预测耦合。通过对线性散射体阵列的电场积分方程进行数值求解的比较,验证了该模型。结果以双基地散点图的形式给出,以提供对完整散射行为的了解。

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