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Evaluation of far-field layered media modeling for time-domain commercial GPR antenna

机译:时域商用GPR天线的远场分层媒体建模评估

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The possibility to estimate accurately the subsurface electromagnetic properties from commercial ground penetrating radar (GPR) signals using inverse modeling is obstructed by the appropriateness of the forward model describing the GPR subsurface system. In 2004 Lambot et al. proposed a promising GPR model for multilayered media characterization based on frequency-domain subsurface Green's functions and antenna effects filtering by linear transfer functions. In this study we analyzed the feasibility of full-waveform frequency-domain modeling for off-ground time-domain commercial GPR. We calculated the antenna transfer functions using measurements with a 1 GHz center frequency transmitting and receiving horn antenna situated at different heights above a copper plane. Also we validated the approach in the laboratory with measurements performed over the water as a homogeneous medium with frequency dependent electrical properties. A single Debye relaxation model was used to describe the frequency dependent water electrical properties with correcting the relaxation period and static dielectric permittivity of water for temperature. Inversion of the radar data in the frequency-domain provided relatively accurate estimations of the antenna heights and water layer thickness. These results demonstrated the ability of full-waveform modeling to be also used for commercial time-domain radars.
机译:使用反向建模从商业探地雷达(GPR)信号准确估计地下电磁特性的可能性因描述GPR地下系统的正向模型的适当性而受阻。在2004年,Lambot等人。提出了一种基于频域地下格林函数和线性传递函数的天线效应滤波的多层介质表征的有前途的GPR模型。在这项研究中,我们分析了离地时域商业GPR的全波形频域建模的可行性。我们使用位于铜平面上方不同高度的1 GHz中心频率发射和接收喇叭天线的测量结果来计算天线传递函数。我们还通过在水上作为具有频率相关电特性的均质介质在水上进行的测量对实验室中的方法进行了验证。使用单个德拜松弛模型来描述频率相关的水电特性,并校正水的松弛周期和温度的静态介电常数。雷达数据在频域中的反演提供了天线高度和水层厚度的相对准确的估计。这些结果证明了全波形建模还可以用于商业时域雷达的能力。

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