Preliminary results on multi offset GPR for imaging of landmines

F. Lombardi, H. Griffiths, A. Balleri, M. Lualdi
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引用次数: 1

Abstract

Ground Penetrating Radar (GPR) is widely recognised as an operationally useful sensor for mine detection as it can offer better detection performance than the ubiquitous metal detector in the presence of low-metal content mines. However, GPR has to overcome many potential sources of false alarm due to clutter and battlefield debris, which lower the efficiency of the sensor. This paper analyses a set of experimental data collected in a recent multi-offset GPR measurement campaign with inert landmines composed of different assemblies buried in sandy soil. The aim of the work is to evaluate the key differences observed by a radar system when the transmitter and the receiver are moved apart, as a function of their distance and hence when the illuminated section of the target is diversified. The results of the comparison between the collected multi-offset profiles show that using a bistatic geometry could represent a strategy to reconstruct composite objects with finer and better details.
多偏距探地雷达成像的初步结果
探地雷达(GPR)作为一种实用的地雷探测传感器被广泛认可,因为它在低金属含量地雷存在时可以提供比普遍存在的金属探测器更好的探测性能。然而,探地雷达必须克服由于杂波和战场碎片而导致的许多潜在误报源,从而降低传感器的效率。本文分析了最近在沙土中埋设不同组件的惰性地雷进行的多偏距探地雷达测量的一组实验数据。这项工作的目的是评估当发射器和接收器分开移动时雷达系统观察到的关键差异,作为它们距离的函数,因此当目标的照射部分多样化时。对采集到的多偏移轮廓进行对比,结果表明,采用双基地几何结构可以提供一种更精细、更精细的复合目标重建策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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