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Diaphragm Based Fiber Bragg Grating Acceleration Sensor with Temperature Compensation

机译:基于膜片的光纤布拉格光栅加速度传感器,具有温度补偿

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A novel fiber Bragg grating (FBG) sensing-based acceleration sensor has been proposed to simultaneously decouple and measure temperature and acceleration in real-time. This design applied a diaphragm structure and utilized the axial property of a tightly suspended optical fiber, enabling improvement in its sensitivity and resonant frequency and achieve a low cross-sensitivity. The theoretical vibrational model of the sensor has been built, and its design parameters and sensing properties have been analyzed through the numerical analysis. A decoupling method has been presented with consideration of the thermal expansion of the sensor structure to realize temperature compensation. Experimental results show that the temperature sensitivity is 8.66 pm/°C within the range of 30–90 °C. The acceleration sensitivity is 20.189 pm/g with a linearity of 0.764% within the range of 5~65 m/s 2 . The corresponding working bandwidth is 10~200 Hz and its resonant frequency is 600 Hz. This sensor possesses an excellent impact resistance for the cross direction, and the cross-axis sensitivity is below 3.31%. This implementation can avoid the FBG-pasting procedure and overcome its associated shortcomings. The performance of the proposed acceleration sensor can be easily adjusted by modifying their corresponding physical parameters to satisfy requirements from different vibration measurements.
机译:提出了一种新颖的基于光纤布拉格光栅(FBG)传感的加速度传感器,以同时解耦并实时测量温度和加速度。该设计采用了膜片结构,并利用了紧密悬垂的光纤的轴向特性,从而可以提高其灵敏度和谐振频率,并实现较低的交叉灵敏度。建立了传感器的理论振动模型,并通过数值分析对传感器的设计参数和传感特性进行了分析。已经提出了一种考虑传感器结构的热膨胀以实现温度补偿的去耦方法。实验结果表明,温度敏感度在30–90°C范围内为8.66 pm /°C。加速度灵敏度为20.189 pm / g,线性在5〜65 m / s 2范围内为0.764%。对应的工作带宽为10〜200 Hz,谐振频率为600 Hz。该传感器在横向方向上具有出色的抗冲击性,并且横向轴灵敏度低于3.31%。这种实现方式可以避免FBG粘贴过程并克服其相关的缺点。可以通过修改其相应的物理参数轻松满足所提出的加速度传感器的性能,以满足不同振动测量的要求。

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