Optical Communication Technology, Volume. 46, Issue 3, 43(2022)

Strain measurement based on optoelectronic oscillator and high-birefringence fiber

BING Fan1...2, SUN Chunran3, WANG Muguang1,2, ZHANG Jing1,2, and TANG Yu12 |Show fewer author(s)
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  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    References(18)

    [1] [1] KIM B H, LEE S H, LIN A, et al. Large temperature sensitivity of Sagnac loop interferometer based on the birefringent holey fiber filled with metal indium[J]. Optics Express, 2009, 17(3): 1789-1794.

    [2] [2] SUN G, MOON D S, CHUNG Y. Simultaneous temperature and strain measurement using two types of high-birefringence fibers in Sagnac loop mirror[J]. IEEE Photonics Technology Letters, 2007, 19(24): 2027-2029.

    [3] [3] DONG B, ZHOU D P, WEI L. Temperature insensitive all-fiber compact polarization-maintaining photonic crystal fiber based interferometer and its applications in fiber sensors[J]. Journal of Lightwave Technology, 2009, 28(7): 1011-1015.

    [4] [4] KIM H M, KIM T H, KIM B, et al. Temperature-insensitive torsion sensor with enhanced sensitivity by use of a highly birefringent photonic crystal fiber[J]. IEEE Photonics Technology Letters, 2010, 22(20): 1539-1541.

    [5] [5] FRAZAO O, SILVA R M, SANTOS J L. High-birefringent fiber loop mirror sensors with an output port probe[J]. IEEE Photonics Technology Letters, 2010, 23(2): 103-105.

    [6] [6] KANG J, DONG X, ZHU Y, et al. A fiber strain and vibration sensor based on high birefringence polarization maintaining fibers[J]. Optics Communications, 2014(2): 105-108.

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    [8] [8] BLUESTONE A, SPENCER D T, SRINIVASAN S, et al. An ultra-low phase-noise 20-GHz PLL utilizing an optoelectronic voltage-controlled oscillator[J]. IEEE Transactions on Microwave Theory and Techniques, 2015, 63(3): 1046-1052.

    [9] [9] ZHENG J, SUN W, WANG W, et al. Frequency-doubling OEO using the polarization property of LiNbO3 modulator[J]. IEEE Photonics Technology Letters, 2015, 27(17): 1864-1867.

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    [11] [11] NGUYEN L D, NAKATANI K, JOURNET B. Refractive index measurement by using an optoelectronic oscillator[J]. IEEE Photonics Technology Letters, 2010, 22(12): 857-859.

    [12] [12] WANG Y, ZHANG J, YAO J. An optoelectronic oscillator for high sensitivity temperature sensing[J]. IEEE Photonics Technology Letters, 2016, 28(13): 1458-1461.

    [13] [13] YIN B, WANG M, WU S, et al. High sensitivity axial strain and temperature sensor based on dual-frequency optoelectronic oscillator using PMFBG Fabry-Perot filter[J]. Optics express, 2017, 25(13): 14106-14113.

    [14] [14] LIU J, WANG M, TANG Y, et al. Switchable optoelectronic oscillator using an FM-PS-FBG for strain and temperature sensing[J]. IEEE Photonics Technology Letters, 2017, 29(23): 2008-2011.

    [15] [15] WU B, WANG M, DONG Y, et al. Magnetic field sensor based on a dual-frequency optoelectronic oscillator using cascaded magnetostrictive alloy-fiber Bragg grating-Fabry Perot and fiber Bragg grating-Fabry Perot filters[J]. Optics express, 2018, 26(21): 27628-27638.

    [16] [16] ZHANG J, WANG M, TANG Y, et al. High-sensitivity measurement of angular velocity based on an optoelectronic oscillator with an intra-loop Sagnac interferometer[J]. Optics letters, 2018, 43(12): 2799-2802.

    [17] [17] VARNHAM M P, BARLOW A J, PAYNE D N, et al. Polarimetric strain gauges using high birefringence fiber[J]. Electronics Letters, 1983, 19(17): 699-700.

    [18] [18] LAWRENCE M. Lithium niobate integrated optics[J]. Reports on Progress in Physics, 1993, 56(3): 363-429.

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    BING Fan, SUN Chunran, WANG Muguang, ZHANG Jing, TANG Yu. Strain measurement based on optoelectronic oscillator and high-birefringence fiber[J]. Optical Communication Technology, 2022, 46(3): 43

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    Paper Information

    Special Issue:

    Received: Mar. 15, 2021

    Accepted: --

    Published Online: Jul. 21, 2022

    The Author Email:

    DOI:10.13921/j.cnki.issn1002-5561.2022.03.009

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