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Preprocessing of A-scan GPR data based on energy features

机译:基于能量特征的A扫描GPR数据的预处理

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There is an increasing demand for noninvasive real-time detection and classification of buried objects in various civil and military applications. The problem of detection and annihilation of landmines is particularly important due to strong safety concerns. The requirement for a fast real-time decision process is as important as the requirements for high detection rates and low false alarm rates. In this paper, we introduce and demonstrate a computationally simple, time-efficient, energy-based preprocessing approach that can be used in ground penetrating radar (GPR) applications to eliminate reflections from the air-ground boundary and to locate the buried objects, simultaneously, at one easy step. The instantaneous power signals, the total energy values and the cumulative energy curves are extracted from the A-scan GPR data. The cumulative energy curves, in particular, are shown to be useful to detect the presence and location of buried objects in a fast and simple way while preserving the spectral content of the original A-scan data for further steps of physics-based target classification. The proposed method is demonstrated using the GPR data collected at the facilities of IPA Defense, Ankara at outdoor test lanes. Cylindrically shaped plastic containers were buried in fine-medium sand to simulate buried landmines. These plastic containers were half-filled by ammonium nitrate including metal pins. Results of this pilot study are demonstrated to be highly promising to motivate further research for the use of energy-based preprocessing features in landmine detection problem.
机译:在各种民用和军事应用中,对非侵入式实时检测和分类掩埋物体的需求日益增长。由于强烈的安全考虑,地雷的发现和歼灭问题特别重要。快速实时决策过程的要求与高检测率和低虚警率的要求一样重要。在本文中,我们介绍并演示了一种计算简单,省时,基于能量的预处理方法,该方法可用于探地雷达(GPR)应用中,以消除空地边界的反射并同时定位掩埋物体,只需一步即可。从A扫描GPR数据中提取瞬时功率信号,总能量值和累积能量曲线。特别是,累积能量曲线显示出可用于以快速简单的方式检测掩埋物体的存在和位置,同时保留了原始A扫描数据的光谱内容,用于基于物理的目标分类的进一步步骤。在安卡拉IPA防御设施的室外测试车道上收集的GPR数据证明了该方法的有效性。将圆柱形塑料容器埋入中型沙子中,以模拟埋藏的地雷。这些塑料容器用包括金属针的硝酸铵填充一半。这项初步研究的结果被证明很有希望激发人们进一步开展基于能量的预处理特征在地雷探测问题中的研究。

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