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Land mine detection using a ground-penetrating radar based onresistively loaded Vee dipoles

机译:使用基于阻力加载的Vee偶极子的探地雷达探测地雷

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Resistively loaded Vee dipoles are considered for use in a short-pulse ground penetrating radar (GPR) used to detect buried antipersonnel land mines. First, a study is made to select a short pulse to radiate that is most appropriate for the problem. A simple one-dimensional (1-D) analysis of some representative soils and a land mine is used to select a radiated pulse similar in shape to a differentiated Gaussian pulse with a spectral peak at 4 GHz. Based on previous studies, the conductivity of the arms of the Vee dipole is linearly tapered from the feed to the open ends. A fully three-dimensional (3-D) finite-difference time domain (FDTD) model is developed and used to simulate the GPR land mine detection problem. Using this model, a resistively loaded Vee dipole is selected and evaluated. Parametric studies related to the problem are conducted including: varying the height of the Vee above the ground, varying the position of the land mine both laterally and in depth, and examining the effects of the geometry of the land mine on the received signal. Environmental conditions are examined including signal returns from rocks and variations in the shape of the surface of the ground. The FDTD results are validated by comparisons with experimental data. These studies demonstrate that resistively loaded Vee dipoles can greatly reduce clutter related to the antenna, making the task of distinguishing land mines (targets) much easier
机译:电阻加载的Vee偶极子被认为可用于短脉冲探地雷达(GPR)中,该雷达用于探测掩埋的杀伤人员地雷。首先,进行研究以选择最适合该问题的短脉冲来辐射。通过对一些代表性土壤和地雷进行简单的一维(1-D)分析,可以选择形状类似于微分高斯脉冲的辐射脉冲,其峰值在4 GHz。根据先前的研究,Vee偶极子臂的电导率从进料到开口端呈线性变化。建立了全三维(3-D)时差有限域(FDTD)模型,并将其用于模拟GPR地雷探测问题。使用该模型,选择并评估了电阻加载的Vee偶极子。进行了与该问题有关的参数研究,包括:改变Vee在地面上方的高度,在侧面和深度上改变地雷的位置,并检查地雷的几何形状对接收信号的影响。检查了环境条件,包括岩石发出的信号返回以及地面表面形状的变化。通过与实验数据进行比较来验证FDTD结果。这些研究表明,电阻加载的Vee偶极子可以大大减少与天线相关的杂波,从而使识别地雷(目标)的任务更加容易

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