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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >RCS of Complex Targets: Original Representation Validated by Measurements—Application to ISAR Imagery
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RCS of Complex Targets: Original Representation Validated by Measurements—Application to ISAR Imagery

机译:复杂目标的RCS:通过测量验证的原始表示形式-在ISAR图像中的应用

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摘要

In this paper, we propose and investigate a model based on asymptotic methods, designed to compute the radar cross section (RCS) of complex targets. A combined method of physical optics, geometrical optics, and the equivalent current method is applied to establish an effective backscattering analysis procedure. The scattering model includes shadowing effects, multiple bounce, and diffraction by edges. This model is used for RCS estimation and to generate inverse synthetic aperture radar (ISAR) raw data for imaging applications. We review the theoretical aspects and describe the proposed model and experimental setup in detail. Numerical results are provided and compared with the experimental results obtained in the anechoic chamber of ENSTA Bretagne to validate the approach through the computation of the RCS for canonical objects and a generic boat. Finally, a parallelepiped representation of the RCS is presented to be used for ISAR imagery, and the first results concerning the ISAR imaging of a generic boat are provided.
机译:在本文中,我们提出并研究了一种基于渐近方法的模型,旨在计算复杂目标的雷达截面(RCS)。物理光学,几何光学和等效电流方法的组合方法可用于建立有效的反向散射分析程序。散射模型包括阴影效果,多次反射和边缘衍射。该模型用于RCS估计并生成用于成像应用的逆合成孔径雷达(ISAR)原始数据。我们回顾了理论方面,并详细描述了所提出的模型和实验装置。提供了数值结果,并将其与在ENSTA Bretagne消声室中获得的实验结果进行了比较,以通过对典型物体和通用船的RCS计算来验证该方法。最后,提出了RCS的平行六面体表示形式,用于ISAR图像,并提供了有关普通船的ISAR成像的初步结果。

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