地雷探测的GPR建模

M. González-Huici, U. Uschkerat
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引用次数: 10

摘要

探地雷达(GPR)是一种很有前途的低金属或非金属地雷成像技术,它可以通过非侵入式地下传感技术探测各种土壤中浅埋的低介电对比度目标。本文提出了一个包含实际脉冲探地雷达系统、界面、土壤和目标的复杂探地雷达场景的完整有限元模型。我们得到了不同土壤条件下不同测试点和小目标的时域特征,与测量值有很好的相关性。仿真结果使我们对控制小目标电磁散射的因素有了更广泛的认识,并可用于根据目标和背景参数解释信号特征。得到的波形可以用来降低虚警。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GPR modeling for landmine detection
Ground penetrating radar (GPR), which can detect shallow buried low dielectric contrast objects in a variety of soils by non-invasive subsurface sensing, is a promising technology for imaging low-metal or non-metallic landmines. In this paper we present a complete model of a complex GPR scenario which is solved via finite element method, and includes the actual impulse GPR system, interface, soil and targets. We obtain time domain signatures for different testmines and small objects under different soil conditions which are satisfactorily correlated with measurements. The simulated responses give us a broad understanding about the factors which control the electromagnetic scattering by small objects and are used to interpret the characteristics of the signatures according to the target and background parameters. These obtained waveforms may be applied to reduce the false alarm.
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