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Full Waveform Inverse Modeling of Ground Penetrating Radar Data: An InitialApproach

机译:探地雷达数据的全波形逆模型:初步方法

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Ground penetrating radar (GPR) surveys can be interpreted quantitatively to givemore definitive depths, geometry, and electromagnetic (EM) properties of the subsurface materials. Existing analysis procedures do not consider EM wave attenuation, dispersion, scattering, geometric spreading, or interface reflection transmission losses. The aim of this research is to develop interpretation procedures which utilize the full GPR waveform for determining layer thicknesses and the EM properties of subsurface materials. The work consisted of three phases: (1) review existing capability for full waveform forward modeling of GPR signals, (2) develop a catalog of theoretical GPR receiver waveforms for representative layered models, and (3) examine the feasibility of developing an inverse modeling procedure to determine physical properties by comparing full waveform forward solutions to measured GPR signatures.

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