• Acta Optica Sinica
  • Vol. 41, Issue 13, 1306020 (2021)
Yuanze Xue1、2、**, Xuefeng Wang1、2、*, Caijie Tang1、2, and Hongchun Gao1、2
Author Affiliations
  • 1Beijing Aerospace Control Device Institute, Beijing 100854, China
  • 2Beijing Engineering Research Center of Optical Fiber Sensing System, Beijing 100094, China
  • show less
    DOI: 10.3788/AOS202141.1306020 Cite this Article Set citation alerts
    Yuanze Xue, Xuefeng Wang, Caijie Tang, Hongchun Gao. Cross-Correlation Algorithm of Optical Frequency Domain Reflectometry Sensing System Based on Adapted Range[J]. Acta Optica Sinica, 2021, 41(13): 1306020 Copy Citation Text show less
    References

    [1] Eickhoff W, Ulrich R. Optical frequency-domain reflectometry in single-mode fibers. [C]∥Optical Fiber Communication Conference 1981, April 27-29, 1981, San Francisco, California, United States. Washington, D.C.: OSA, WF3(1981).

    [2] Froggatt M, Moore J. High-spatial-resolution distributed strain measurement in optical fiber with Rayleigh scatter[J]. Applied Optics, 37, 1735-1740(1998).

    [3] Wada D C, Igawa H, Tamayama M et al. Flight demonstration of aircraft fuselage and bulkhead monitoring using optical fiber distributed sensing system[J]. Smart Materials and Structures, 27, 025014(2018).

    [4] Sun G, Bai H J, Shi Y L et al. Research progress and application of optical frequency domain reflectometer[J]. Laser & Optoelectronics Progress, 57, 050007(2020).

    [5] Kreger S T, Gifford D K, Froggatt M E et al. High resolution distributed strain or temperature measurements in single-and multi-mode fiber using swept-wavelength interferometry. [C]∥Optical Fiber Sensor 2006, October 23-27, 2006, Cancun, Mexico. Washington, D.C.: OSA, ThE42(2006).

    [6] Xie W L, Dong Y, Zhou Q et al. Phase noise analysis of optical frequency domain reflectometry[J]. Acta Optica Sinica, 31, 0706003(2011).

    [7] Ding Z Y, Liu T G, Meng Z et al. Note: improving spatial resolution of optical frequency-domain reflectometry against frequency tuning nonlinearity using non-uniform fast Fourier transform[J]. Review of Scientific Instruments, 83, 066110(2012).

    [8] Zhou D P, Li W, Chen L et al. Distributed temperature and strain discrimination with stimulated Brillouin scattering and Rayleigh backscatter in an optical fiber[J]. Sensors (Basel), 13, 1836-1845(2013).

    [9] Zhang C, Yang N, Bao Y et al. Spectral resolution improvement technique for optical frequency-domain reflectometry-based optical fiber distributed sensing[J]. Acta Optica Sinica, 37, 0806001(2017).

    [10] Feng K P, Cui J W, Jiang D et al. Improvement of the strain measurable range of an OFDR based on local similar characteristics of a Rayleigh scattering spectrum[J]. Optics Letters, 43, 3293-3296(2018).

    [11] Feng K P, Cui J W, Dang H et al. A OFDR signal processing method based on wavelet transform for improving its sensing performance[J]. IEEE Photonics Technology Letters, 31, 1108-1111(2019).

    [12] Zhang Z L, Gao L, Sun Y Y et al. Strain transfer law of distributed optical fiber sensor[J]. Chinese Journal of Lasers, 46, 0410001(2019).

    [13] Wu J H, Liu H, Yang P et al. Identification and monitoring of concrete cracks based on optical frequency domain reflectometry technique[J]. Laser & Optoelectronics Progress, 56, 241201(2019).

    [14] Wu J H, Wang G, Liu J. Establishment. 1. 8(5):, 8, 107-112(2019).

    [15] Song J, Li W H, Lu P et al. Long-range high spatial resolution distributed temperature and strain sensing based on optical frequency-domain reflectometry[J]. IEEE Photonics Journal, 6, 1-8(2014).

    [16] Zhao S Y, Cui J W, Suo L J et al. Performance investigation of OFDR sensing system with a wide strain measurement range[J]. Journal of Lightwave Technology, 37, 3721-3727(2019).

    Yuanze Xue, Xuefeng Wang, Caijie Tang, Hongchun Gao. Cross-Correlation Algorithm of Optical Frequency Domain Reflectometry Sensing System Based on Adapted Range[J]. Acta Optica Sinica, 2021, 41(13): 1306020
    Download Citation