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Fast damage imaging using the time-reversal technique in the frequency-wavenumber domain

机译:在频率-波数域中使用时间反转技术进行快速损伤成像

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摘要

The time-reversal technique has been successfully used in structural health monitoring (SHM) for quantitative imaging of damage. However, the technique is very time-consuming when it is implemented in the time domain. In this paper, we study the technique in the frequency-wavenumber (f-k) domain for fast real-time imaging of multiple damage sites in plates using scattered flexural plate waves. Based on Mindlin plate theory, the time reversibility of dispersive flexural waves in an isotropic plate is theoretically investigated in the f-k domain. A fast damage imaging technique is developed by using the cross-correlation between the back-propagated scattered wavefield and the incident wavefield in the frequency domain. Numerical simulations demonstrate that the proposed technique cannot only localize multiple damage sites but also potentially identify their sizes. Moreover, the time-reversal technique in the f-k domain is about two orders of magnitude faster than the method in the time domain. Finally, experimental testing of an on-line SHM system with a sparse piezoelectric sensor array is conducted for fast multiple damage identification using the proposed technique.
机译:时间反转技术已成功用于结构健康监测(SHM),以对损伤进行定量成像。但是,在时域中实施该技术非常耗时。在本文中,我们研究了在频率-波数(f-k)域中使用分散的挠性板波对板中多个损伤部位进行快速实时成像的技术。基于Mindlin板理论,从理论上研究了f-k域中各向同性板中色散弯曲波的时间可逆性。利用频域中反向传播的散射波场与入射波场之间的互相关性,发展了一种快速损伤成像技术。数值模拟表明,所提出的技术不仅可以定位多个损伤部位,而且还可以潜在地确定其大小。此外,f-k域中的时间反转技术比时域中的方法快大约两个数量级。最后,使用提出的技术对带有稀疏压电传感器阵列的在线SHM系统进行了实验测试,以快速识别多个损伤。

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