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Characterisation of a ground penetrating radar antenna in lossless homogeneous and lossy heterogeneous environments

机译:无损均质和有损异质环境中探地雷达天线的特性

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Directly measuring the radiation characteristics of Ground Penetrating Radar (GPR) antennas in environments typically encountered in GPR surveys, presents many practical difficulties. However it is very important to understand how energy is being transmitted and received by the antenna, especially for areas of research such as antenna design, signal processing, and inversion methodologies. To overcome the difficulties of experimental measurements, we used an advanced modelling toolset to simulate detailed three-dimensional Finite-Difference Time-Domain (FDTD) models of GPR antennas in realistic environments. A semi-empirical soil model was utilised, which relates the relative permittivity of the soil to the bulk density, sand particle density, sand fraction, clay fraction and volumetric fraction of water. The radiated energy from the antenna was studied in lossless homogeneous dielectrics as well as, for the first time, in lossy heterogeneous environments. Significant variations in the magnitude and pattern shape were observed between the lossless homogeneous and lossy heterogeneous environments. Also, despite clear differences in time domain responses from simulations that included only an infinitesimal dipole source model and those that used the full antenna model, there were strong similarities in the radiated energy distributions.
机译:在GPR调查通常遇到的环境中直接测量探地雷达(GPR)天线的辐射特性存在许多实际困难。然而,了解天线如何发射和接收能量非常重要,尤其是在诸如天线设计,信号处理和反演方法学等研究领域。为了克服实验测量的困难,我们使用了高级建模工具集来模拟真实环境中GPR天线的详细三维有限时域(FDTD)模型。利用半经验土壤模型,该模型将土壤的相对介电常数与水的堆积密度,砂粒密度,砂分数,粘土分数和体积分数相关。在无损均质电介质中以及有损异质环境中首次研究了天线的辐射能量。在无损均匀和有损异构环境之间观察到幅度和图案形状的显着变化。同样,尽管模拟的时域响应存在明显差异,其中仅包括无限小偶极子源模型,也有使用完整天线模型的仿真,但在辐射能量分布方面存在很大相似之处。

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