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基于光纤布拉格光栅的位移传感器:近期进展综述

Fiber-Bragg-Grating-Based Displacement Sensors: Review of Recent Advances.

作者信息

Bonopera Marco

机构信息

National Center for Research on Earthquake Engineering (NCREE), Taipei 10668, Taiwan.

出版信息

Materials (Basel). 2022 Aug 12;15(16):5561. doi: 10.3390/ma15165561.

Abstract

With the development of fiber optical technologies, fiber Bragg grating (FBG) sensors are frequently utilized in structural health monitoring due to their considerable advantages, including fast response, electrical passivity, corrosion resistance, multi-point sensing capability and low-cost production, as well as high accuracy and resolution over a long period. These characteristics allow FBG to be a proper alternative sensing element for displacement measurements. In this article, the recent sensing advances and principles of detection of FBG-based displacement sensors are illustrated. Specifically, the latest FBG-based displacement technologies are examined from three principles of detection, i.e., wavelength, intensity and phase signal demodulation. Regarding wavelength detection methods, the problem related to the cross-sensitivity can significantly be reduced depending on the new type of cantilever-FBG-based sensing developed. Vice versa, only the packaging method of FBG prestressed between two fixed ends can still avoid the chirp phenomenon in the reflection spectrum. Moreover, to attenuate the influence of temperature variations on the accuracy of FBG displacement sensors, specific temperature self-compensation structures were successfully designed according to the concepts of phase signal demodulation. In future investigations, different elastic structures and gratings manufactured through special fibers and new methodologies for temperature compensation will still highly refine the efficiency of FBG-based displacement sensors.

摘要

随着光纤技术的发展,光纤布拉格光栅(FBG)传感器因其诸多显著优势,如响应速度快、电气绝缘、耐腐蚀、具备多点传感能力、生产成本低以及长期高精度和高分辨率等,而在结构健康监测中得到广泛应用。这些特性使FBG成为位移测量的合适替代传感元件。本文阐述了基于FBG的位移传感器的最新传感进展及检测原理。具体而言,从波长、强度和相位信号解调这三种检测原理对最新的基于FBG的位移技术进行了研究。对于波长检测方法,根据新型悬臂式FBG传感技术的发展,与交叉敏感性相关的问题可显著降低。反之,仅通过将FBG预应力封装在两个固定端之间的方法仍可避免反射光谱中的啁啾现象。此外,为减弱温度变化对FBG位移传感器精度的影响,根据相位信号解调概念成功设计了特定的温度自补偿结构。在未来的研究中,通过特殊光纤制造的不同弹性结构和光栅以及新的温度补偿方法仍将极大地提高基于FBG的位移传感器的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0a6/9414369/2bbe384c75d5/materials-15-05561-g001.jpg

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