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FBG sensor array-based-low speed impact localization system on composite plate

机译:基于FBG传感器阵列的低速复合板冲击定位系统

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摘要

A fiber Bragg grating (FBG) sensors-based impact localization system on composite structure and a novel localization algorithm independent of wave velocity were proposed. Six FBG sensors constitute two isosceles right triangle FBG arrays. Impact signals were detected by a high-speed FBG interrogation system. Morlet wavelet transform was employed to extract time differences of impact signals. The straight lines equations, which are through impact source and FBG sensors of right-angled vertices of FBG arrays, can be obtained by the time differences. The coordinate of impact source is the intersection of straight lines. Testing experiments were carried out on composite plate within 400 mm x 400 mm monitor area. The experimental results showed that the maximum and average errors were 20.92 and 8.67 mm, respectively. This article provides a simple and stable impact source localization system independent of wave velocity.
机译:提出了基于光纤布拉格光栅(FBG)传感器的复合结构冲击定位系统,提出了一种与波速无关的新型定位算法。六个FBG传感器构成两个等腰直角FBG阵列。高速FBG询问系统检测到了撞击信号。采用Morlet小波变换提取冲击信号的时差。可以通过时间差获得通过FBG阵列的直角顶点的冲击源和FBG传感器得出的直线方程。冲击源的坐标是直线的交点。测试实验是在400 mm x 400 mm监控区域内的复合板上进行的。实验结果表明,最大误差和平均误差分别为20.92和8.67 mm。本文提供了一种与波速无关的简单稳定的冲击源定位系统。

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