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Analysis of ultrasonic frequency response of surface attached fiber Bragg grating

机译:表面贴附光纤布拉格光栅的超声频率响应分析

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摘要

In recent years, fiber Bragg grating (FBG), for the well-known advantages over other fiber optic sensors, has attracted more attention in ultrasonic inspection for structure health monitoring (SHM). Spectrum shift of FBG to ultrasonic wave is caused by the refractive index profile changing along the FBG, which can be attributed to nonuniform perturbation caused by strain-optic and geometric effects of ultrasonic wave. Response of FBG to the above two effects was analyzed firstly by the V-I transmission matrix model, showing high computing efficiency. Based on this model, spectra response of FBG under changing ultrasonic frequencies was simulated and discussed. In experiment, the system was able to detect a wideband ultrasonic wave ranging from 15 to 1380 kHz. These results would provide a guideline for an FBG-based acoustic detection system design in a specific ultrasonic frequency.
机译:近年来,由于布拉格布拉格光栅(FBG)相对于其他光纤传感器的众所周知的优势,在结构健康监控(SHM)的超声波检查中引起了更多关注。 FBG向超声波的频谱偏移是由沿FBG的折射率分布变化引起的,这可以归因于超声波的应变光学和几何效应引起的不均匀摄动。首先通过V-I传输矩阵模型分析了FBG对以上两种效应的响应,显示了较高的计算效率。基于该模型,对FBG在超声频率变化下的光谱响应进行了仿真和讨论。在实验中,该系统能够检测15至1380 kHz的宽带超声波。这些结果将为在特定超声频率下基于FBG的声音检测系统设计提供指导。

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