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Optical Fiber Voltage Sensor Based on Michelson Interferometer Using Phase Generated Carrier Demodulation Algorithm

机译:基于Michelson干涉仪的光纤电压传感器使用相位产生的载波解调算法

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摘要

We present an optical fiber voltage sensor by Michelson interferometer (MI) employing a Fabry-Perot (F-P) tunable optical filter and the phase generated carrier demodulation algorithm. By mounting an MI fabricated by an optical fiber coupler on a piezoelectric transducer, a dynamic strain would be generated to change the phase difference of the interferometer when the measured voltage is applied on the piezoelectric. The phase generated carrier demodulation method was used to obtain the phase variation of the interferometer by applying demodulate signal on an F-P tunable optical filter. The measured voltage can be obtained by the variation of the phase; the random phase shift in the interferometer and the intensity fluctuation of the light source of the sensor can be eliminated. The experiment results show that the relation between the phase variation and the voltage applied on the piezoelectric is approximately linear. The dielectric reliability of the sensor has been verified according to the IEC standard.
机译:我们通过Michelson干涉仪(MI)提供了一种光纤电压传感器,采用法布里 - 珀罗(F-P)可调滤光滤波器和相位生成的载波解调算法。通过在压电换能器上安装由光纤耦合器制造的MI,将产生动态应变以在压电上施加测量电压时改变干涉仪的相位差。通过在F-P可调谐光学滤波器上施加解调信号,使用相位产生的载波解调方法来获得干涉仪的相变。测量的电压可以通过相位的变化获得;可以消除干涉仪中的随机相移和传感器的光源的强度波动。实验结果表明,相变与压电上施加的电压之间的关系大致线性。根据IEC标准验证了传感器的介质可靠性。

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