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Dynamic High-Pressure Calibration of the Fiber-Optic Sensor Based on Birefringent Side-Hole Fibers

机译:基于双折射侧孔光纤的光纤传感器动态高压校准

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This paper presents a dynamic pressure calibration of the fiber-optic interferometric sensor based on highly birefringent side-hole fibers. Earlier, we tested other types of fiber-optic sensors based on the same principle for measurements of static and quasi-static pressure. To apply the sensor for measurements of fast pressure changes, the dynamic analysis is crucial due to the occurrence of resonance phenomena and due to the possibility of false pressure readings. We applied a static calibration procedure to initially determine the pressure sensitivity and temperature stability of the sensor. Next, we compared the characteristics of the fiber-optic sensor with the responses of a calibrated piezoelectric dynamic pressure sensor at an operating range of 110 bar with a sampling rate equal to 200 kHz. The characteristics of the fiber-optic sensor are in good agreement with those of the reference piezoelectric sensor for the linear and exponential functions and for the half-sine when the pulse is wider than 400 ms. However, for half-sine pulses narrower than 250 ms, resonance oscillations occur only in the reference sensor. Construction of the fiber-optic sensor reduces the undesirable oscillations, which thereby makes it possible to operate on frequencies higher by about one order than in the case of the piezoelectric sensor. It clearly shows that the highly birefringent fiber-optic sensors can be successfully applied for measurements of rapid pressure changes.
机译:本文介绍了基于高度双折射侧孔光纤的光纤干涉传感器的动态压力校准。之前,我们基于相同的原理测试了其他类型的光纤传感器,以用于测量静态和准静态压力。为了将传感器应用于快速压力变化的测量,动态分析至关重要,因为会发生共振现象,并且可能会产生错误的压力读数。我们应用了静态校准程序来初步确定传感器的压力灵敏度和温度稳定性。接下来,我们将光纤传感器的特性与校准的压电动态压力传感器在110 bar的工作范围内的采样率等于200 kHz的响应进行了比较。当脉冲宽度大于400 ms时,光纤传感器的线性和指数函数以及半正弦曲线的特性与参考压电传感器的特性非常吻合。但是,对于小于250 ms的半正弦脉冲,共振仅在参考传感器中发生。光纤传感器的构造减少了不希望的振荡,由此使得可以在比压电传感器的情况下高大约一阶的频率上进行操作。它清楚地表明,高度双折射的光纤传感器可以成功地用于快速压力变化的测量。

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