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Interferometric fibre-optic curvature sensing for structural, directional vibration measurements

机译:干涉式光纤曲率传感,用于结构,方向振动测量

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Dynamic fibre-optic curvature sensing using fibre segment interferometry is demonstrated using a cost-effective range-resolved interferometry interrogation system. Differential strain measurements from four fibre strings, each containing four fibre segments of gauge length 20 cm, allow the inference of lateral vibrations as well as the direction of the vibration of a cantilever test object. Dynamic tip displacement resolutions in the micrometre range over a 21 kHz interferometric bandwidth demonstrate the suitability of this approach for highly sensitive fibre-optic directional vibration measurements, complementing existing laser vibrometry techniques by removing the need for side access to the structure under test.
机译:使用具有成本效益的测距解决干涉仪询问系统,演示了使用光纤分段干涉仪的动态光纤曲率传感。来自四个光纤串的差分应变测量,每个光纤串包含四个长度为20 cm的光纤段,可以推断出横向振动以及悬臂测试对象的振动方向。在21 kHz干涉带宽上,微米范围内的动态尖端位移分辨率证明了该方法适用于高灵敏度的光纤定向振动测量,通过消除了对被测结构的侧面进入的需求,对现有的激光振动测量技术进行了补充。

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