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A realistic FDTD numerical modeling framework of ground penetrating radar for landmine detection

机译:探地雷的真实FDTD数值建模框架

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摘要

A three-dimensional (3-D) finite-difference time-domain (FDTD) algorithm is used in order to simulate ground penetrating radar (GPR) for landmine detection. Two bowtie GPR transducers are chosen for the simulations and two widely employed antipersonnel (AP) landmines, namely PMA-1 and PMN are used. The validity of the modeled antennas and landmines is tested through a comparison between numerical and laboratory measurements. The modeled AP landmines are buried in a realistically simulated soil. The geometrical characteristics of soil's inhomogeneity are modeled using fractal correlated noise, which gives rise to Gaussian semivariograms often encountered in the field. Fractals are also employed in order to simulate the roughness of the soil's surface. A frequency-dependent complex electrical permittivity model is used for the dielectric properties of the soil, which relates both the velocity and the attenuation of the electromagnetic waves with the soil's bulk density, sand particles density, clay fraction, sand fraction, and volumetric water fraction. Debye functions are employed to simulate this complex electrical permittivity. Background features like vegetation and water puddles are also included in the models and it is shown that they can affect the performance of GPR at frequencies used for landmine detection (0.5-3 GHz). It is envisaged that this modeling framework would be useful as a testbed for developing novel GPR signal processing and interpretations procedures and some preliminary results from using it in such a way are presented.
机译:为了模拟用于探雷的探地雷达(GPR),使用了三维(3-D)有限差分时域(FDTD)算法。模拟中选择了两个领结式GPR传感器,并使用了两种广泛使用的杀伤人员(AP)地雷,即PMA-1和PMN。通过比较数值和实验室测量值,测试了建模天线和地雷的有效性。模拟的AP地雷被掩埋在真实模拟的土壤中。利用分形相关噪声对土壤非均质性的几何特征进行建模,这导致了该领域中经常遇到的高斯半变异函数。分形也被用来模拟土壤表面的粗糙度。将频率相关的复介电常数模型用于土壤的介电特性,该模型将电磁波的速度和衰减与土壤的容重,砂粒密度,粘土分数,沙子分数和体积水分数相关。使用德拜函数来模拟这种复杂的介电常数。模型中还包括诸如植被和水坑之类的背景特征,并且表明它们会在用于地雷探测的频率(0.5-3 GHz)上影响GPR的性能。可以设想,该建模框架将用作开发新型GPR信号处理和解释程序的试验台,并提供了以这种方式使用它的一些初步结果。

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