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Design and Analysis of a Combined Strain–Vibration–Temperature Sensor with Two Fiber Bragg Gratings and a Trapezoidal Beam

机译:具有两个光纤布拉格光栅和梯形梁的应变-振动-温度组合传感器的设计和分析

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摘要

A combined sensor to simultaneously measure strain, vibration, and temperature has been developed. The sensor is composed of two Fiber Bragg gratings (FBGs) and a vibration gainer. One FBG is used to measure strain, while the other measures vibration and temperature. The gainer has a mass block which is used to increase its sensitivity to vibration. The main beam of the vibration gainer was designed as a trapezoid in order to reduce the strain gradient while sensing vibration. In addition, an interrogation method was used to eliminate interactions between measured parameters. Experiments were carried out to analyze the performance of the proposed sensor. For individual strain measurement in the range of 0–152 με, the sensitivity and nonlinearity error were 1.878 pm/με and 2.43% Full Scale (F.S.), respectively. For individual temperature measurement in the range of 50–210 °C, the sensitivity and nonlinearity error were 29.324 pm/°C and 1.88% F.S., respectively. The proposed sensor also demonstrated a sensitivity of 0.769 pm/m·s−2 and nonlinearity error of 1.83% F.S. for vibration measurement in the range of 10–55 m/s2. Finally, simultaneously measuring strain, temperature, and vibration resulted in nonlinearity errors of 4.23% F.S., 1.89% F.S., and 2.23% F.S., respectively.
机译:已经开发出一种同时测量应变,振动和温度的组合传感器。该传感器由两个光纤布拉格光栅(FBG)和一个振动增益器组成。一个FBG用于测量应变,而另一个则用于测量振动和温度。增益器具有质量块,该质量块用于增加其对振动的敏感性。减振器的主梁设计为梯形,以便在感应振动时减小应变梯度。另外,使用一种询问方法来消除测量参数之间的相互作用。实验进行了分析所提出的传感器的性能。对于在0–152με范围内的单个应变测量,灵敏度和非线性误差分别为1.878 pm /με和2.43%满刻度(F.S.)。对于50-210°C范围内的单个温度测量,灵敏度和非线性误差分别为29.324 pm /°C和1.88%F.S.。提出的传感器还显示出0.769 pm / m·s -2 的灵敏度和1.83%F.S.的非线性误差。振动测量的范围为10–55 m / s 2 。最后,同时测量应变,温度和振动会导致非线性误差分别为4.23%F.S.,1.89%F.S.和2.23%F.S.。

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