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首页> 外文期刊>Measurement Science & Technology >An interrogator for fibre Bragg grating sensors using an ultrasonically induced long-period optical fibre grating
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An interrogator for fibre Bragg grating sensors using an ultrasonically induced long-period optical fibre grating

机译:使用超声波感应长周期光纤光栅的光纤布拉格光栅传感器询问器

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摘要

An ultrasonically induced long-period fibre grating (U-LPFG) functions as a tunable notch filter, since the pitch of refractive index modulation is changed by the driving frequency of the ultrasonic vibration propagating along a fibre. In this paper, we present the application of the U-LPFG for a fibre Bragg grating (FBG) sensor interrogator. If the U-LPFG is connected to the FBG sensor output and the ultrasonic frequency is swept, the FBG centre wavelength can be found as the ultrasonic frequency that gives a minimum output. The first half of the paper is devoted to the experimental investigation to reveal the optical transmission characteristics of the U-LPFG. We observed from our experiments that the travelling wave of flexural vibration is successfully excited on the fibre due to the remaining silicone coating at the fibre terminal. The rejection ratio is changed by the ultrasonic vibration amplitude, while the rejection band width depends on the length of the fibre where the vibration is excited. The wide tunable range of 160 nm (from 1490 to 1650 nm) is available for the ultrasonic frequency range of 300 kHz. We introduced several weighted mean methods to improve the accuracy of determining the centre wavelength. For an interrogator of an FBG temperature sensor, 7.4 deg C in standard deviation was obtained.
机译:超声波感应长周期光纤光栅(U-LPFG)用作可调谐陷波滤波器,因为折射率调制的节距随沿纤维传播的超声波振动的驱动频率而改变。在本文中,我们介绍了U-LPFG在光纤布拉格光栅(FBG)传感器询问器中的应用。如果将U-LPFG连接到FBG传感器输出,并且扫描了超声波频率,则可以找到FBG中心波长作为给出最小输出的超声波频率。本文的前半部分致力于实验研究,以揭示U-LPFG的光传输特性。从我们的实验中我们观察到,由于光纤末端保留了硅酮涂层,弯曲振动的行波在光纤上被成功激发。抑制比随超声振动幅度而变化,而抑制带宽度取决于激发振动的光纤的长度。 160 nm的宽可调范围(从1490到1650 nm)可用于300 kHz的超声频率范围。我们引入了几种加权均值方法来提高确定中心波长的准确性。对于FBG温度传感器的询问器,标准偏差为7.4摄氏度。

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