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Temperature insensitive measurements of displacement using fiber Bragg grating sensors

机译:使用纤维布拉格光栅传感器的挡板温度不敏感测量

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Optical fiber Bragg grating (FBG) displacement sensors play an important role in various areas due to the high sensitivity to displacement. However, it becomes a serious problem of FBG cross-sensitivity of temperature and displacement in applications with FBG displacement sensing. This paper presents a method of temperature insensitive measurement of displacement via using an appropriate layout of the sensor. A displacement sensor is constructed with two FBGs mounted on the opposite surface of a cantilever beam. The wavelengths of the FBGs shift with a horizontal direction displacement acting on the cantilever beam. Displacement measurement can be achieved by demodulating the wavelengths difference of the two FBGs. In this case, the difference of the two FBGs’ wavelengths can be taken in order to compensate for the temperature effects. Four cantilever beams with different shapes are designed and the FBG strain distribution is quite different from each other. The deformation and strain distribution of cantilever beams are simulated by using finite element analysis, which is used to optimize the layout of the FBG displacement sensor. Experimental results show that an obvious increase in the sensitivity of this change on the displacement is obtained while temperature dependence greatly reduced. A change in the wavelength can be found with the increase of displacement from 0 to 10mm for a cantilever beam. The physical size of the FBG displacement sensor head can be adjusted to meet the need of different applications, such as structure health monitoring, smart material sensing, aerospace, etc.
机译:光纤布拉格光栅(FBG)位移传感器由于对位移的高敏感性而在各个领域发挥着重要作用。然而,它成为FBG位移传感中的温度和位移中的FBG交叉敏感性的严重问题。本文介绍了使用传感器的适当布局的位移温度不敏感测量的方法。位移传感器构造有安装在悬臂梁的相对表面上的两个FBG。 FBGS与作用在悬臂梁上的水平方向位移的波长。通过解调两个FBG的波长差异,可以实现位移测量。在这种情况下,可以采取两个FBGS波长的差异以补偿温度效应。设计了具有不同形状的四个悬臂梁,并且FBG应变分布彼此完全不同。通过使用有限元分析模拟悬臂梁的变形和应变分布,其用于优化FBG位移传感器的布局。实验结果表明,在温度依赖性大幅降低的同时获得了这种变化变化的灵敏度的明显增加。可以在悬臂梁0到10mm的位移增加,找到波长的变化。可以调整FBG位移传感器头的物理尺寸以满足不同应用的需要,例如结构健康监控,智能材料感应,航空航天等。

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