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A non-contact FBG vibration sensor with double differential temperature compensation

机译:具有双温差补偿的非接触式FBG振动传感器

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摘要

This paper has presented a non-contact fiber Bragg grating (FBG) vibration sensor with double differential temperature compensation. Two FBGs and two states of the sensor have been employed to achieve double differential temperature compensation. Based on magnetic coupling and FBG sensing principle, it can be used to realize non-contact measurement of vibration of the rotating shaft. Experimental results show that the working band ranges are within 0-150 Hz; the sensitivity is -0.67 pm/mu m, and the linearity is 3.87 % within a range of 2-2.6 mm. The fitting equation of temperature compensation which is caused by structural inflation can be expressed as: Delta lambda(1)' - Delta lambda(2)' = 1.51 x T -32.97. When used to amend a temperature error, the sensor's temperature error will be reduced to 1.19 % in the range of 25-60 degrees C.
机译:本文提出了一种具有双温差补偿的非接触式光纤布拉格光栅(FBG)振动传感器。已采用两个FBG和传感器的两个状态来实现双差分温度补偿。基于磁耦合和FBG传感原理,可用于实现旋转轴振动的非接触式测量。实验结果表明,工作频带范围在0-150 Hz之内;灵敏度为-0.67 pm /μm,在2-2.6 mm范围内线性度为3.87%。由结构膨胀引起的温度补偿的拟合方程可表示为:Delta lambda(1)'-Delta lambda(2)'= 1.51 x T -32.97。当用于修正温度误差时,传感器的温度误差将在25-60摄氏度范围内降低至1.19%。

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