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首页> 外文期刊>International journal of antennas and propagation >3D Imaging of Buried Dielectric Targets with a Tomographic Microwave Approach Applied to GPR Synthetic Data
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3D Imaging of Buried Dielectric Targets with a Tomographic Microwave Approach Applied to GPR Synthetic Data

机译:应用于GPR合成数据的断层微波方法对埋伏介电目标的3D成像

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Effective diagnostics with ground penetrating radar (GPR) is strongly dependent on the amount and quality of available data as well as on the efficiency of the adopted imaging procedure. In this frame, the aim of the present work is to investigate the capability of a typical GPR system placed at a ground interface to derive three-dimensional (3D) information on the features of buried dielectric targets (location, dimension, and shape). The scatterers can have size comparable to the resolution limits and can be placed in the shallow subsurface in the antenna near field. Referring to canonical multimonostatic configurations, the forward scattering problem is analyzed first, obtaining a variety of synthetic GPR traces and radargrams by means of a customized implementation of an electromagnetic CAD tool. By employing these numerical data, a full 3D frequency-domain microwave tomographic approach, specifically designed for the inversion problem at hand, is applied to tackle the imaging process. The method is tested here by considering various scatterers, with different shapes and dielectric contrasts. The selected tomographic results illustrate the aptitude of the proposed approach to recover the fundamental features of the targets even with critical GPR settings.
机译:探地雷达(GPR)的有效诊断在很大程度上取决于可用数据的数量和质量,以及所采用成像过程的效率。在此框架中,当前工作的目的是研究放置在地面接口处的典型GPR系统的能力,以得出有关埋入式电介质目标的特征(位置,尺寸和形状)的三维(3D)信息。散射体的大小可以与分辨率极限相比,并且可以放置在天线近场中的浅地下。参考规范多单调配置,首先分析前向散射问题,并通过电磁CAD工具的定制实现方式获得各种合成GPR轨迹和雷达图。通过利用这些数值数据,专门针对手头反演问题设计的完整3D频域微波层析成像方法可解决成像过程。在此,通过考虑具有不同形状和介电对比度的各种散射体来测试该方法。所选的层析成像结果表明,即使在关键的GPR设置下,该方法也能恢复目标的基本特征。

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