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Packaging and Temperature Compensation of Fiber Bragg Grating for Strain Sensing: A Survey

机译:纤维布拉格光栅的包装和温度补偿应变感应:调查

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摘要

Abstract During last decades, sensor elements based on the fiber Bragg grating (FBG) have been widely studied and developed due to the advantages of immunity to electromagnetic interference, compact size, high precision, and so on. The FBG itself is sensitive to axial strain and temperature variation directly and can indirectly measure these complex physical parameters, such as pressure, displacement, and vibration, by using some specially designed elastic structures to convert them into the axial strain of the FBG. Whether the FBG is fixed on the measured object to measure the strain directly or fixed on an elastic structure body to measure other physical quantities, these types of FBGs could be collectively called as strain sensing FBGs. The packaging of the FBG has important influence on FBG characteristics that directly affect the measurement accuracy, such as strain transfer, temperature characteristic, and spectral shape. This paper summarizes the packaging methods and corresponding temperature compensation methods of the currently reported strain sensing FBGs, focusing especially on fully pasted FBG, pre-stretched FBG with double-end fixed, and metallic packaging. Furthermore, the advantages and drawbacks of different packaging methods have been analyzed, which can provide a reference for future researches.
机译:摘要在上几十年中,基于纤维布拉格光栅(FBG)的传感器元件已被广泛研究和开发,由于免疫电磁干扰,紧凑尺寸,高精度等的优点。 FBG本身直接对轴向应变和温度变化敏感,并且可以通过使用一些专门设计的弹性结构将它们转换为FBG的轴向应变,间接测量这些复杂的物理参数,例如压力,位移和振动,例如压力,位移和振动。无论FBG是否固定在测量物体上,以直接测量应变或固定在弹性结构体上以测量其他物理量,这些类型的FBG可以共同称为应变感测FBG。 FBG的包装对FBG特性有重要影响,即直接影响测量精度,例如应变转移,温度特性和光谱形状。本文总结了目前报告的应变传感FBG的包装方法和相应的温度补偿方法,特别是在完全粘贴的FBG上,预先拉伸的FBG,双端固定和金属包装。此外,已经分析了不同包装方法的优点和缺点,这可以为未来的研究提供参考。

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