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Acoustic Emission Localization in a Composite Stiffened Panel using a Time Reversal Algorithm

机译:使用时间反转算法的复合加劲板中的声发射定位

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This research work presents an in-situ imaging method for the localization of the impact point in complex anisotropic structures with diffuse field conditions, using only one passive transducer. The proposed technique is based on the time reversal approach applied to a number of waveforms stored into a database containing the experimental Green's function of the medium. The present method exploits the benefits of multiple scattering, mode conversion and boundaries reflections to achieve the focusing of the source with high resolution. The optimal re-focusing of the back propagated wave field at the impact point is accomplished through a "virtual" imaging process, which does not require any iterative algorithms and a priori knowledge of the mechanical properties of the structure. The robustness of the time reversal method is experimentally demonstrated on a stiffened composite panel and the source position can be retrieved with a high level of accuracy (error less than 3%). The simple configuration, minimal processing requirements and computational time (less than 1 sec) make this method a valid alternative to the conventional imaging structural health monitoring systems for the acoustic emission source localization.
机译:这项研究工作提出了一种原位成像方法,该方法仅使用一个无源换能器即可对具有扩散场条件的复杂各向异性结构中的冲击点进行定位。所提出的技术基于时间反转方法,该方法应用于存储在包含介质的实验格林函数的数据库中的许多波形。本方法利用了多次散射,模式转换和边界反射的优点,以实现高分辨率的光源聚焦。反向传播波场在撞击点的最佳重新聚焦是通过“虚拟”成像过程完成的,该过程不需要任何迭代算法,也无需事先了解结构的机械性能。时间逆转方法的鲁棒性在加硬的复合板上进行了实验证明,并且可以以很高的精度(误差小于3%)检索源位置。简单的配置,最少的处理要求和计算时间(不到1秒)使该方法成为常规的成像结构健康状况监测系统的有效替代方案,可用于声发射源定位。

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