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Impact localization on complex structures using FBG strain amplitude information

机译:使用FBG应变幅度信息影响复杂结构的定位

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Localization of low energy impacts on carbon fiber composites is an important aspect of structural health monitoring since it creates subsurface damage which can significantly reduce the stiffness of a component. A novel impact localization method is proposed based on the strain amplitude measured by Fiber Bragg Grating (FBG) sensors. The algorithm is based on the relative placement of all sensors and the maximum strain amplitude measured by each sensor. This method requires minimal knowledge of the material or the structure and a minimum number of sensors. The algorithm showed good results on both simulated and experimental test cases of woven composite plates. It was found that a minimum of five FBG are necessary to accurately predict the impact location on a plate. The algorithm was also tested on a woven composite wing showing good localization along the span of the wing but higher errors along the chord length due to the nonlinearity in the measured strains.
机译:低能量影响对碳纤维复合材料的定位是结构健康监测的重要方面,因为它会产生地下损伤,这可以显着降低组件的刚度。基于光纤布拉格光栅(FBG)传感器测量的应变幅度提出了一种新的冲击定位方法。该算法基于所有传感器的相对放置和每个传感器测量的最大应变幅度。该方法需要对材料或结构的最小知识以及最小数量的传感器。该算法在编织复合板的模拟和实验测试案例上显示出良好的结果。发现至少需要五个FBG来准确地预测板上的冲击位置。该算法还在编织复合机翼上测试,其显示沿着机翼跨度的良好定位,但由于测量菌株中的非线性,沿着弦长的较高误差。

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