首页> 外文期刊>Research in nondestructive evaluation: a journal of the American Society for Nondestructive Testing >A TIME DOMAIN EQUIVALENT SOURCE MODEL OF AN IMPULSE GPR ANTENNA BASED ON MEASURED RADIATION FIELDS
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A TIME DOMAIN EQUIVALENT SOURCE MODEL OF AN IMPULSE GPR ANTENNA BASED ON MEASURED RADIATION FIELDS

机译:基于实测辐射场的脉冲GPR天线的时域等效源模型

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摘要

Ground Penetrating Radar (GPR) is a valuable tool for determining bridge deck health. The ability to simulate scattering from bridge deck elements and the complex interactions between them, as well as from changes due to the presence and relative location of defects is important for understanding observed responses. These simulations can be performed using electromagnetic computational modeling techniques such as Finite-Difference Time Domain (FDTD). In order to accurately model the GPR investigation, it is necessary to have a time domain equivalent source model that can launch and receive electromagnetic waves into the computational space that replicates the signals transmitted and received by the physical GPR antenna. However, due to complexity of design and proprietary information, the GPR unit is typically very difficult, or even impossible, to fully model with sufficient detail. For bridge deck applications, simulation in two-dimensions adequately captures much of the three-dimensional scattering. Two-dimensional simulations have significant computational savings over three-dimensions, and are more feasible to be iteratively implemented to solve inverse problems. The work presented here uses experimental results and presents a computational approach to determine the characteristics suitable for excitation of a two-dimensional FDTD model.
机译:探地雷达(GPR)是确定桥面板健康状况的重要工具。模拟桥面单元以及它们之间的复杂相互作用以及由于缺陷的存在和相对位置而引起的变化的散射能力对于理解观察到的响应非常重要。可以使用电磁计算建模技术(例如,时差有限域(FDTD))执行这些模拟。为了准确地对GPR研究进行建模,必须有一个时域等效源模型,该模型可以将电磁波发射和接收到计算空间中,从而复制物理GPR天线发送和接收的信号。但是,由于设计和专有信息的复杂性,GPR单元通常很难或什至不可能以足够的细节进行完全建模。对于桥面应用,二维模拟可以充分捕获许多三维散射。二维仿真在三维上具有显着的计算节省,并且对于迭代求解反问题更可行。这里介绍的工作使用实验结果,并提出了一种计算方法来确定适合于激发二维FDTD模型的特性。

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