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Time-Domain Spectral Inversion Method for Characterization of Subsurface Layers in Ground-Penetrating-Radar (GPR) Applications

机译:地面穿透雷达(GPR)应用中地下层表征时域光谱反转方法

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摘要

Ground-Penetrating-Radar (GPR) data analysis has been widely utilized in subsurface and geophysics applications. One of the applications turning into great importance is multilayer subsurface hydraulic parameter identification and soil water content estimations. The classic GPR techniques have shown limitations in detecting deeper soil layers and unsatisfactory accuracy in estimating the electrical properties of the layers. Spectral inversion methods have been recently identified and developed to be an effective tool to tackle these problems. In this work, the spectral inversion method is extended in time-domain and a comprehensive formulation of the algorithm along with an improved well-defined cost function is presented. The Time-Domain Spectral Inversion (TDSI) method is then applied to environmentally-relevant multilayer soil geometries and the corresponding estimated electrical properties are drawn. The results show the TDSI method considerably ameliorates the performance of the inversion in terms of simplicity, accuracy, and applicability.
机译:地面穿透雷达(GPR)数据分析已广泛用于地下和地球物理应用。其中一个申请变得非常重要的是多层地下液压参数鉴定和土壤水分估计。经典的GPR技术已经示出了检测更深的土层和估计层的电性能的令人不令人满意的精度的限制。最近已经识别并开发了光谱反转方法,以成为解决这些问题的有效工具。在这项工作中,呈现频谱反转方法在时域中延伸,并展示了算法的全面配方以及改进的明确定义的成本函数。然后将时域光谱反转(TDSI)方法应用于环境相关的多层土壤几何形状,并且绘制了相应的估计电性能。结果表明,TDSI方法在简单,准确性和适用性方面大大改善了反演的性能。

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