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Low Frequency Fiber Optic Accelerometer for Civil Structural Health Monitoring

机译:低频光纤加速度计,用于民用结构健康监测

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This article describes the development of a fiber optic accelerometer based on Fiber Bragg Gratings (FBG). The accelerometer, designed for the structural health monitoring of bridges, utilizes a lumped mass attached to a stretched FBG. Acceleration is measured by the FBG in response to the vibration of the fiber optic mass system. The wavelength shift of FBG is proportional to the change in acceleration, and the gauge factor pertains to the shift in wavelength as a function of acceleration. The accelerometer was first evaluated in laboratory settings and then employed in a demonstration project for condition assessment of a bridge. Laboratory experiments included a series of low frequency low amplitude sinusoidal excitation tests to evaluate the sensitivity and frequency resolution of the proposed sensor. Two series of multiplexed FBG accelerometers were utilized to assess the dynamic properties of a bridge under ambient vibration conditions. The Frequency Domain Decomposition method was employed to identify the mode shapes and natural frequencies of the bridge. Results were compared with the data acquired from the conventional accelerometers.
机译:本文介绍了基于光纤布拉格光栅(FBG)的光纤加速度计的开发。该加速度计专为桥梁的结构健康监测而设计,利用附在拉伸FBG上的集总质量。 FBG根据光纤质量系统的振动来测量加速度。 FBG的波长偏移与加速度的变化成正比,而规格因子则是波长偏移与加速度的函数。首先在实验室环境中对加速度计进行评估,然后将其用于示范项目,以评估桥梁的状况。实验室实验包括一系列低频低振幅正弦激励测试,以评估所提出传感器的灵敏度和频率分辨率。利用两个系列的多路FBG加速度计来评估桥梁在环境振动条件下的动态特性。频域分解法被用来识别桥梁的振型和固有频率。将结果与从常规加速度计获得的数据进行比较。

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