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Vibration measurement of smart composite structures using a new intensity-modulated optical fiber sensor

机译:使用新型强度调制光纤传感器进行智能复合结构的振动测量

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Abstract: A new intensity modulated optical fiber vibration sensor has been employed to monitor the vibration signal in the smart composite structures in this paper. The advantages of this sensor ar the lower cost and the easy-to-use system. The sensor were fabricated using conventional 50/125 step-index multimode optical fibers and the custom-drawn epoxy resin capillary tube. The construction of this sensor is like the extrinsic Fabry-Perot interferometric. A face coupling theory of the intensity modulated fiber optic vibration sensor is developed. This optical fiber sensor has been embedded in the end of the smart composite cantilevered beam. The static and dynamic characteristics of this optical fiber vibration sensor have been tested. At the same time, the compared test of this sensor with commercial piezoelectric transducer are also finished. The experimental results show that the new type of intensity modulated optical fiber vibration sensor has higher sensitivity and better dynamic and static properties. The spectrum response of this sensor are also agreeable to that of the commercial transducer. !5
机译:摘要:本文采用一种新型的强度调制光纤振动传感器来监测智能复合结构中的振动信号。这种传感器的优点是成本较低且系统易于使用。该传感器使用常规的50/125阶跃折射率多模光纤和定制的环氧树脂毛细管制成。该传感器的结构类似于外部法布里-珀罗干涉仪。建立了强度调制光纤振动传感器的面耦合理论。该光纤传感器已嵌入智能复合悬臂梁的末端。该光纤振动传感器的静态和动态特性已经过测试。同时,还完成了该传感器与商用压电换能器的对比测试。实验结果表明,新型强度调制光纤振动传感器具有更高的灵敏度和更好的动,静态性能。该传感器的频谱响应也与商用换能器的频谱响应一致。 !5

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