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Volume 29 Issue 3
Sep.  2013
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A novel fiber Bragg grating sensor interrogation system utilizing a tunable Fabry-Perot filter

  • Corresponding author: ZHANG Shu-lian, zsldp@itsinghua.edu.cn
  • Received Date: 2004-05-08
    Accepted Date: 2004-11-15
  • To improve the performance of FBG interrogation system,a novel fiber Bragg grating sensor interrogation system based on a tunable fiber Fabry-Perot (FFP) filter was demonstrated.Firstly,a reference fiber Bragg grating (FBG) was used as a wavelength reference element.By measuring the wavelength difference between reference FBG and sensor FBG,the drift of tunable FFP filter's cavity length was compensated.Secondly,a quadratic fit function wa s made with software based on experiment results.This function showed a good fit to the relationship between the displacement of PZT and control voltage.It was used to calculate the wavelength of the sensing FBG.In experiment,a strain of 0~1800 με was applied to the sensing FBG and the maximum nonlinearity deviat ion of measured wavelength was 0.5%.Experiment results show that the measured er ror caused by the drift of FFP filter's cavity length and PZT's nonlinearity is greatly reduced and a higher accuracy is obtained.
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    KERSEY A D,BERKOFF T A,MOREY W W.Fiber optic Bragg grating sensor with drift-compensated high resolution interferometric wavelength shift detection [J].Opt Lett,1993,18(1):72~74.
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    TODD M D,JOHNSON G A,ALTHOUSE B L.A novel Bragg grating sensor interrogation system utilizing a scanning filter,a Mach-Zehnder interferometer and a 3×3 coupler [J].Measurement Science and Technology,2001,12(7):771~777.
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A novel fiber Bragg grating sensor interrogation system utilizing a tunable Fabry-Perot filter

    Corresponding author: ZHANG Shu-lian, zsldp@itsinghua.edu.cn
  • 1. State Key Laboratory of Precision Measurement Technology and Instruments, Tsinghua University, Beijing 100084, China

Abstract: To improve the performance of FBG interrogation system,a novel fiber Bragg grating sensor interrogation system based on a tunable fiber Fabry-Perot (FFP) filter was demonstrated.Firstly,a reference fiber Bragg grating (FBG) was used as a wavelength reference element.By measuring the wavelength difference between reference FBG and sensor FBG,the drift of tunable FFP filter's cavity length was compensated.Secondly,a quadratic fit function wa s made with software based on experiment results.This function showed a good fit to the relationship between the displacement of PZT and control voltage.It was used to calculate the wavelength of the sensing FBG.In experiment,a strain of 0~1800 με was applied to the sensing FBG and the maximum nonlinearity deviat ion of measured wavelength was 0.5%.Experiment results show that the measured er ror caused by the drift of FFP filter's cavity length and PZT's nonlinearity is greatly reduced and a higher accuracy is obtained.

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