Opto-Electronic Engineering, Volume. 52, Issue 1, 240233(2025)
Research on fiber optic interferometric vibration measurement system based on internal modulation
[1] Li Y J, Wang Z F, Wang J et al. Damage identification of I-Beam based on fiber Bragg grating vibration sensor and extreme learning machine[J]. Chin J Lasers, 48, 1610004(2021).
[2] Zhou Z R, Qiu Z J, Li K et al. Review on demodulation methods for optic fiber Fabry-Perot sensors[J]. Opto-Electron Eng, 49, 210411(2022).
[3] Ding J W, Zhou W J, Yu Y J. Vibration modes study of defective eardrum realized using digital holographic endoscopy[J]. Chin J Lasers, 50, 1507204(2023).
[4] Yu K, Chen Y G, Wang G P. Laser excitation of coherent acoustic vibrations of metallic nanoresonators and their applications[J]. Acta Opt Sin, 43, 1623015(2023).
[5] Zhu J L, Li L. Monitoring mechanical vibration amplitude system design based on the PVDF piezoelectric film sensor[J]. Appl Mech Mater, 556-562(2014).
[6] Song X W. Error analysis and improvement of rail longitudinal force measurement by strain electrical measuring method[D](2012).
[7] Zhang B Z, Liu K, Liu K et al. Research on dynamic variance threshold algorithm based on distributed fiber vibration sensor system[J]. Opto-Electron Eng, 50, 220205(2023).
[8] Sun C M, Sun K H, Ge J Q. Measurement of surface vibrations of ultrasonic transducers by laser interference method[J]. Chin. J. Lasers, 47, 0904006(2020).
[9] Zhang L S, Li R S, Lan Y C et al. Detection of solid surface microvibration excited via acoustic radiation using sinusoidal phase modulation interferometer[J]. Chin J Lasers, 49, 0304001(2022).
[10] Wang C, Liang C, Huangfu S N et al. Research on non-contact photoacoustic signal detection based on laser heterodyne interferometry[J]. Chin J Lasers, 51, 0307402(2024).
[11] Zhu J H. Research on key technologies of laser vibrometry for micro-bead retro-reflection target[D](2018).
[12] Yang P G, Jia H Z, Fu K Y et al. Study on all-fiber sinusoidal phase modulation interferometer for displacement measurement[J]. Opt Instrum, 45, 1-8(2023).
[13] Karim F, Zhu Y P, Han M. Modified phase-generated carrier demodulation of fiber-optic interferometric ultrasound sensors[J]. Opt Express, 29, 25011-25021(2021).
[14] Sun Z S, Liu K, Jiang J F et al. Dynamic phase extraction in an ameliorated distributed vibration sensor using a highly stable homodyne detection[J]. IEEE Sensors J, 21, 27005-27014(2021).
[15] Xiao W Z, Cheng J, Zhang D W et al. High stability PGC demodulation technique for fiber-optic interferometric sensor[J]. Opto-Electron Eng, 49, 210368(2022).
[16] Guo J H, Liu X J, Hu M L et al. Elimination of parasitic interference effect in fiber-optic external sinusoidal phase-modulating interferometer based on Kalman filter[J]. Measurement, 187, 110334(2022).
[17] Wu Y J, Li C R, Wang C et al. Self-calibration phase demodulation scheme for stabilization based on an auxiliary reference fiber-optic interferometer and ellipse fitting algorithm[J]. Opt Express, 31, 4639-4651(2023).
[18] Gong Y F, Yu B L, Shi J H et al. Ameliorted algorithm for PGC to eliminate the influence of carrier phase delay with FFT[J]. Opt Fiber Technol, 82, 103554(2024).
[19] Volkov A V, Plotnikov M Y, Mekhrengin M V et al. Phase modulation depth evaluation and correction technique for the PGC demodulation scheme in fiber-optic interferometric sensors[J]. IEEE Sensors J, 17, 4143-4150(2017).
[20] Ni C, Zhang M, Zhu Y et al. Sinusoidal phase-modulating interferometer with ellipse fitting and a correction method[J]. Appl Opt, 56, 3895-3899(2017).
[21] Qu Z Y, Guo S, Hou C B et al. Real-time self-calibration PGC-Arctan demodulation algorithm in fiber-optic interferometric sensors[J]. Opt Express, 27, 23593-23609(2019).
[22] Guo J H, Li D G, Liu X J et al. Dimensionality-reduced iterative ellipse fitting algorithm for fiber-optic sinusoidal frequency modulation interferometer quadrature signal correction[J]. Opt Lasers Eng, 174, 107973(2024).
[23] Dong Y S, Zhang J R, Fu H J et al. High-speed and high-precision measurement of biaxial in-plane displacements: tens of nanometers principle error suppression in microprobe sensors[J]. Opt Express, 32, 15199-15214(2024).
[24] Krauhausen M, Priem R, Claßen R et al. Sub-micron inline thickness measurement of cold-rolled metal strips by multi-wavelength interferometry and laser triangulation[J]. Opt Express, 31, 43804-43820(2023).
[25] Dong Y S, Luo W R, Li W W et al. Focus on sub-nanometer measurement accuracy: distortion and reconstruction of dynamic displacement in a fiber-optic microprobe sensor[J]. Light Adv Manuf, 5, 51(2024).
[26] Dong Y S, Li W W, Zhang J R et al. High-speed PGC demodulation model and method with subnanometer displacement resolution in a fiber-optic micro-probe laser interferometer[J]. Photon Res, 12, 921-931(2024).
[27] Shi Q P, Tian Q, Wang L W et al. Performance improvement of phase-generated carrier method by eliminating laser-intensity modulation for optical seismometer[J]. Opt Eng, 49, 024402(2010).
[28] Tian C D, Wang L W, Zhang M et al. Performance improvement of PGC method by using lookup table for optical seismometer[J]. Proc SPIE, 7503, 750348(2009).
[29] Hou C B, Guo S. Automatic carrier phase delay synchronization of PGC demodulation algorithm in fiber-optic interferometric sensors[J]. KSII Trans Internet Inf Syst, 14, 2891-2903(2020).
[30] Zhang S. Research on eliminating light intensity disturbance in the fiber-optic sensor based on PGC demodulation algorithms[D](2016).
[31] Zhang S H, Chen Y P, Chen B Y et al. A PGC-DCDM demodulation scheme insensitive to phase modulation depth and carrier phase delay in an EOM-based SPM interferometer[J]. Opt Commun, 474, 126183(2020).
[32] Dong Y S, Hu P C, Ran M et al. Phase modulation depth setting technique of a phase-generated-carrier under AOIM in fiber-optic interferometer with laser frequency modulation[J]. Opt Express, 28, 31700-31713(2020).
[33] Dong Y S, Hu P C, Fu H J et al. Long range dynamic displacement: precision PGC with sub-nanometer resolution in an LWSM interferometer[J]. Photon Res, 10, 59-67(2022).
[34] Yan L P, Chen Z Q, Chen B Y et al. Precision PGC demodulation for homodyne interferometer modulated with a combined sinusoidal and triangular signal[J]. Opt Express, 26, 4818-4831(2018).
[35] Liao H, Xie J D, Yan L P et al. Precision vibration measurement using differential phase-modulated homodyne interferometry[J]. Opt Lasers Eng, 169, 107695(2023).
[36] Yan L P, Zhou C Y, Xie J D et al. Nonlinear error compensation method for PGC demodulation based on Kalman filtering[J]. Chin J Lasers, 47, 0904002(2020).
[37] Zhang S H, Chen B Y, Yan L P et al. Real-time normalization and nonlinearity evaluation methods of the PGC-arctan demodulation in an EOM-based sinusoidal phase modulating interferometer[J]. Opt Express, 26, 605-616(2018).
[38] Xie J D, Yan L P, Chen B Y et al. Extraction of carrier phase delay for nonlinear errors compensation of PGC demodulation in an SPM interferometer[J]. J Lightwave Technol, 37, 3422-3430(2019).
[39] Yan L P, Zhang Y D, Xie J D et al. Nonlinear error compensation of PGC demodulation with the calculation of carrier phase delay and phase modulation depth[J]. J Lightwave Technol, 39, 2327-2335(2021).
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Peng Jia, Jiandong Xie, Yingtian Lou, Ye Yang, Tao Yang. Research on fiber optic interferometric vibration measurement system based on internal modulation[J]. Opto-Electronic Engineering, 2025, 52(1): 240233
Category: Article
Received: Oct. 7, 2024
Accepted: Dec. 10, 2024
Published Online: Feb. 21, 2025
The Author Email: Jiandong Xie (谢建东)