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Stabilization of an embedded fiber optic Fabry-Perot sensor for ultrasound detection

机译:稳定用于超声检测的嵌入式光纤Fabry-Perot传感器

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摘要

A method is proposed to stabilize an intrinsic fiber optic Fabry-Perot interferometric sensor embedded in a solid material for the purpose of detecting ultrasound. Without stabilization the interferometer drifts out of quadrature due to the presence of low-frequency dynamic strains. Stabilization is achieved by using active homodyne stabilization which tunes the laser frequency to maintain quadrature. A control loop shifts the laser frequency by 10 GHz at rates less than 25 Hz in order to compensate for induced drifts. The stabilization procedure was tested for a sensor embedded in an epoxy plate. Ultrasonic pulses, generated by a 5 MHz piezoelectric transducer, were detected with the embedded fiber sensor stabilized in the presence of applied low frequency strains. Improvements in sensitivity which result from stabilization are demonstrated. Additionally, a simulated acoustic emission signal, generated by a lead pencil break (Hsu-Neilson source), was detected with the sensor stabilized in the presence of dynamic strains.
机译:为了检测超声,提出了一种稳定嵌入在固体材料中的本征光纤法布里-珀罗干涉传感器的方法。如果没有稳定,则由于存在低频动态应变,干涉仪会偏离正交。稳定是通过使用主动零差稳定来实现的,该稳定零差稳定度可调节激光频率以保持正交。一个控制环路以小于25 Hz的速率将激光频率移动10 GHz,以补偿感应的漂移。测试了嵌入环氧树脂板中的传感器的稳定程序。由5 MHz压电换能器产生的超声波脉冲通过嵌入式光纤传感器在存在低频应变的情况下稳定下来进行检测。证明了稳定带来的灵敏度提高。此外,在动态应变存在的情况下稳定了传感器,检测了由铅笔折断(Hsu-Neilson源)产生的模拟声发射信号。

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