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首页> 外文期刊>International journal of structural stability and dynamics >Experimental Investigation and Error Analysis of High Precision FBG Displacement Sensor for Structural Health Monitoring
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Experimental Investigation and Error Analysis of High Precision FBG Displacement Sensor for Structural Health Monitoring

机译:高精度FBG位移传感器进行结构健康监测实验研究及误差分析

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摘要

High precision structural displacement monitoring is challenging, but an effective method for structural health monitoring and particularly damage evaluation. In this paper, a high precision fiber Bragg grating (FBG) displacement sensor with embedded spring is developed to monitor structural displacement variation even at very small ranges. The principle of such monitoring is based on the central wavelength shifts in accordance with the displacement between measuring points. Calibration experiments are conducted to examine the performance of the innovative displacement sensor. The result indicates that the sensor has excellent linearity and repeatability, with the sensitivity coefficient being 23.96 pm/mm, and the static relative error is 4.94% after three loading and unloading cycles. The displacement sensor therefore shows an excellent sensitivity and high precision for application. Moreover, it has been verified that this sensor is suitable and applicable for displacement monitoring in quasi-static experiment of structures.
机译:高精度结构位移监测是具有挑战性的,而是一种有效的结构健康监测方法,特别是损害评估。在本文中,开发了一种高精度光纤布拉格光栅(FBG)具有嵌入弹簧的位移传感器,以监测在非常小的范围内的结构位移变化。这种监测的原理基于根据测量点之间的位移的中心波长移位。进行校准实验以检查创新位移传感器的性能。结果表明,传感器具有优异的线性和可重复性,灵敏度系数为23.96pm / mm,三次装载和卸载循环后静态相对误差为4.94%。因此,位移传感器显示出优异的敏感性和高精度。此外,已经验证了该传感器适用于结构,可用于结构的准静态实验中的位移监测。

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