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Polarization Differences in Airborne Ground Penetrating Radar Performance for Landmine Detection

机译:用于探测地雷的机载探地雷达性能的极化差异

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The U.S. Army Research Laboratory (ARL) has investigated the ultra-wideband (UWB) radar technology for detection of landmines, improvised explosive devices and unexploded ordnance, for over two decades. This paper presents a phenomenological study of the radar signature of buried landmines in realistic environments and the performance of airborne synthetic aperture radar (SAR) in detecting these targets as a function of multiple parameters: polarization, depression angle, soil type and burial depth. The investigation is based on advanced computer models developed at ARL. The analysis includes both the signature of the targets of interest and the clutter produced by rough surface ground. Based on our numerical simulations, we conclude that low depression angles and H-H polarization offer the highest target-to-clutter ratio in the SAR images and therefore the best radar performance of all the scenarios investigated.
机译:美国陆军研究实验室(ARL)已经研究了超宽带(UWB)雷达技术,用于探测地雷,简易爆炸装置和未爆炸弹药,已有二十多年的历史。本文对现实环境中埋藏地雷的雷达信号以及机载合成孔径雷达(SAR)探测这些目标的性能进行了现象学研究,这些性能是极化,俯角,土壤类型和埋藏深度等多个参数的函数。该调查基于ARL开发的高级计算机模型。分析既包括感兴趣目标的签名,也包括粗糙地面产生的杂波。根据我们的数值模拟,我们得出结论,低俯角和H-H极化在SAR图像中提供了最高的目标杂波比,因此在所有研究场景中都具有最佳的雷​​达性能。

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