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Investigation of the reconstruction accuracy of guided wave tomography using full waveform inversion

机译:全波形反转调查引导波断层扫描的重建精度

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Guided wave tomography is a promising tool to accurately determine the remaining wall thicknesses of corrosion damages, which are among the major concerns for many industries. Full Waveform Inversion (FWI) algorithm is an attractive guided wave tomography method, which uses a numerical forward model to predict the waveform of guided waves when propagating through corrosion defects, and an inverse model to reconstruct the thickness map from the ultrasonic signals captured by transducers around the defect. This paper discusses the reconstruction accuracy of the FWI algorithm on plate-like structures by using simulations as well as experiments. It was shown that this algorithm can obtain a resolution of around 0.7 wavelengths for defects with smooth depth variations from the acoustic modeling data, and about 1.5-2 wavelengths from the elastic modeling data. Further analysis showed that the reconstruction accuracy is also dependent on the shape of the defect. It was demonstrated that the algorithm maintains the accuracy in the case of multiple defects compared to conventional algorithms based on Born approximation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:引导波断层扫描是一个有前途的工具,可以准确地确定腐蚀损坏的剩余壁厚,这是许多行业的主要问题之一。全波形反转(FWI)算法是一种吸引力的引导波断层扫描方法,它使用数值前向模型来预测通过腐蚀缺陷传播时的引导波的波形,以及从换能器捕获的超声信号重建厚度图的逆模型围绕缺陷。本文通过使用模拟以及实验探讨了FWI算法在板状结构上的重建准确性。结果表明,该算法可以获得大约0.7波长的分辨率,用于与声学建模数据的光滑深度变化以及来自弹性建模数据的大约1.5-2波长的缺陷。进一步的分析表明,重建精度也取决于缺陷的形状。据证明,与基于出生近似的传统算法相比,该算法在多种缺陷的情况下保持精度。 (c)2017 Elsevier Ltd.保留所有权利。

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