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Interpreting complex, three-dimensional, near-surface GPR surveys: An integrated modelling and inversion approach

机译:解释复杂的三维近地表GPR调查:集成的建模和反演方法

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摘要

With the increasing computational power of modern personal computers, sophisticated modelling and inversion techniques are becoming popular tools for the interpretation of high-resolution, fully three-dimensional GPR surveys. In this paper, we present the latest results of ongoing practical research into the development of novel, integrated, finite-difference time-domain (FDTD) numerical modelling and linear tomographic inversion methods for the interpretation and analysis of near-surface, 3D GPR data. The proposed approach utilizes the Born approximation solution to the inverse-scattering problem and a truncated singular value decomposition (TSVD) to create the final, inverted reconstructions. A three-dimensional, full-field, 0(2, 4) accurate FDTD modelling scheme is used to generate the numerical-based Green's functions and incident fields for the inversion. As such, accurate antenna sources (including the influence of shields) and near-field air/ground interface effects are inherently included in the inversion formulation. The performance of this integrated method is evaluated via a simulated, 3D, forensic-based, test-case example (a 900 MHz survey over a clandestine human burial target) including coherent noise from near-surface clutter. Although the example is simplistic, the results show that the scheme works well, despite some assumptions in the inversion methodology. As such, useful information can be gained on the true form, depth, location and spatial interrelationships of the buried features and, therefore, improved interpretations can be obtained in a three-dimensional context.
机译:随着现代个人计算机计算能力的提高,复杂的建模和反演技术正成为解释高分辨率,全三维GPR测量的流行工具。在本文中,我们介绍了正在进行的实践研究的最新成果,这些成果用于开发新颖的,集成的,有限差分时域(FDTD)数值建模和线性层析成像反演方法,用于解释和分析近地3D GPR数据。所提出的方法利用了反散射问题的Born逼近解和截断的奇异值分解(TSVD)来创建最终的反向重构。使用三维,全域,0(2,4)精确的FDTD建模方案来生成基于数值的格林​​函数和入射场以进行反演。因此,反演公式固有地包括精确的天线源(包括屏蔽的影响)和近场空气/地面界面效应。通过模拟的,基于法医的3D测试案例(在秘密人类埋葬目标上进行的900 MHz测量),包括近地表杂波的相干噪声,对这种集成方法的性能进行了评估。尽管该示例很简单,但结果表明,尽管在反演方法中有一些假设,该方案仍然有效。这样,可以获得有关掩埋特征的真实形式,深度,位置和空间相互关系的有用信息,因此,可以在三维环境中获得改进的解释。

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