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Experimental study of passive defect localization in plates using ambient noise

机译:利用环境噪声对钢板进行被动缺陷定位的实验研究

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摘要

Passive listening methodology has been shown to be a practical and effective method for passive structural health monitoring. In this work, this approach is applied experimentally to monitor the occurrence of defects in thin aluminum plates. A correlation matrix is estimated from noise vibrations recorded on a transducer array. A defect is localized by applying a beamforming algorithm to the difference between the correlation matrices obtained with and without the defect. We successfully detect defects for different kinds of noise sources. Moreover, we show that this technique is robust to detect massive inclusions, holes, and cracks. With a vibrometer, we observe that the fidelity of the estimated transient responses strongly depends on the number of uncorrelated noise sources. Finally, we show that the defect is successfully localized even if the noise source distribution is not uniform, provided that it remains spatially stationary between the states with and without defect. A simple theoretical framework is proposed to interpret these results.
机译:被动听觉方法已被证明是一种被动有效的结构健康监测方法。在这项工作中,该方法被实验性地应用于监视薄铝板中缺陷的发生。根据记录在换能器阵列上的噪声振动估计相关矩阵。通过将波束成形算法应用于有缺陷和无缺陷时获得的相关矩阵之间的差异,可以对缺陷进行定位。我们成功地检测出各种噪声源的缺陷。此外,我们证明了该技术对于检测大量夹杂物,孔洞和裂纹是鲁棒的。使用振动计,我们观察到估计的瞬态响应的保真度很大程度上取决于不相关噪声源的数量。最后,我们表明,即使噪声源分布不均匀,只要缺陷在有缺陷状态与无缺陷状态之间保持空间静止,缺陷也可以成功定位。提出了一个简单的理论框架来解释这些结果。

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