An optical fiber Bragg grating and piezoelectric ceramic voltage sensor

材料科学 光纤布拉格光栅 电压 光学 光纤传感器 分压器 光纤 光电子学 波长 电气工程 物理 工程类
作者
Qing Yang,Yanxiao He,Shangpeng Sun,Mandan Luo,Rui Han
出处
期刊:Review of Scientific Instruments [American Institute of Physics]
卷期号:88 (10): 105005-105005 被引量:31
标识
DOI:10.1063/1.4986046
摘要

Voltage measurement is essential in many fields like power grids, telecommunications, metallurgy, railways, and oil production. A voltage-sensing unit, consisting of fiber Bragg gratings (FBGs) and piezoelectric ceramics, based on which an optical over-voltage sensor was proposed and fabricated in this paper. No demodulation devices like spectrometer or Fabry-Perot filter were needed to gain the voltage signal, and a relatively large sensing frequency range was acquired in this paper; thus, the cost of the sensing system is more acceptable in engineering application. The voltage to be measured was directly applied to the piezoelectric ceramic, and deformation of the ceramics and the grating would be caused because of the inverse piezoelectric effect. With a reference grating, the output light intensity change will be caused by the FBG center wavelength change; thus, the relationship between the applied voltage and the output light intensity was established. Validation of the sensor was accomplished in the frequency range from 50 Hz to 20 kHz and switching impulse waves with a test platform; good linearity of the input-output characteristic was achieved. A temperature validation test was completed, showing that the sensor maintains good temperature stability. Experimental results show that the optical over-voltage sensor can be used for voltage monitoring, and if applied with a voltage divider, the sensor can be used to measure high voltage.
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