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Quantifying GPR responses

机译:量化GPR回应

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摘要

Antenna height, shielding and subsurface properties all impact the observed GPR responses. While the basic concepts are generally understood, our long term goal is to develop parameterized models that will provide for quantitative interpretation of data acquired with real systems. Our first step was to develop modelling capacity and response presentation tools to help with development. We are using three-dimensional (3D) finite-difference time-domain (FDTD) modelling. Model results are then presented in a variety of forms. In this paper we compute emitted energy characteristics and display in radiation pattern format for infinitesimal dipoles, resistively loaded dipoles and shielded dipoles. Patterns are computed for free-space and over loss-less half-spaces with various properties as a function of height above the surface. The numerical simulations show the advantage of ground-coupling and the impact of shielding on GPR responses. Further, we demonstrate that total radiated energy is a very effective means of characterizing radiated signal directivity for GPR transient emissions.
机译:天线高度,屏蔽和地下特性都会影响观测到的GPR响应。虽然基本概念已广为人知,但我们的长期目标是开发参数化模型,以对使用实际系统获取的数据进行定量解释。我们的第一步是开发建模能力和响应表示工具以帮助开发。我们正在使用三维(3D)有限差分时域(FDTD)建模。然后以各种形式呈现模型结果。在本文中,我们计算了无穷小偶极子,阻性负载偶极子和屏蔽偶极子的辐射能量特征并以辐射图格式显示。针对自由空间和无损半空间上的图案进行计算,这些半空间具有各种属性,该高度取决于表面上方的高度。数值模拟显示了接地耦合的优势以及屏蔽对GPR响应的影响。此外,我们证明总辐射能是表征GPR瞬态发射的辐射信号方向性的非常有效的手段。

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