Research and analysis of Brillouin distributed sensing system based on quasi-single-mode few-mode fiber

HU D J J, HUMBERT G, DONG H, et al. Review of specialty fiber based Brillouin optical time domain analysis technology[J]. Photonics, 2021, 8(10): 421.

Article  Google Scholar 

FENG T, ZHOU J, SHANG Y, et al. Distributed transverse-force sensing along a single-mode fiber using polarization-analyzing OFDR[J]. Optics express, 2020, 28(21): 31253–31271.

Article  ADS  Google Scholar 

GU K, SHI B, LIU C, et al. Investigation of land subsidence with the combination of distributed fiber optic sensing techniques and microstructure analysis of soils[J]. Engineering geology, 2018, 240: 34–47.

Article  Google Scholar 

DONG Y. High-performance distributed Brillouin optical fiber sensing[J]. Photonic sensors, 2021, 11(1): 22.

Article  Google Scholar 

LIU Y, LI H, WANG Y, et al. Damage detection of tunnel based on the high-density cross-sectional curvature obtained using strain data from BOTDA sensors[J]. Mechanical systems and signal processing, 2021, 158(3): 107728.

Article  Google Scholar 

LI H, LIU Y, CAO J, et al. Investigation of the BOTDA technology for structural condition monitoring of urban tunnel[J]. IOP conference series: materials science and engineering, 2019, 603(4): 042003.

Article  Google Scholar 

HU T, HOU G, LI Z. The field monitoring experiment of the roof strata movement in coal mining based on DFOS[J]. Sensors, 2020, 20(5): 1318.

Article  ADS  Google Scholar 

LI Y Q, AN Q, ZHANG L X, et al. High-accuracy Brillouin frequency shift measurement system based on stimulated Brillouin scattering phase shift[J]. Optical engineering, 2017, 56(5): 056102.

Article  ADS  Google Scholar 

SHEN L, HAO W, ZHAO C, et al. Distributed curvature sensing based on a bending loss-resistant ring-core fiber[J]. Photonics research, 2020, 8(2): 10.

Article  Google Scholar 

ZHANG L X, LI Y Q, TIAN M, et al. Performance improvement method of single-ended BOTDA system based on Fresnel reflection[J]. Optoelectronics letters, 2022, 18(3): 170–174.

Article  ADS  Google Scholar 

ZUO M Q, GE D W, LIU J X, et al. Long-haul inter-modal-MIMO-free MDM transmission based on a weakly coupled multiple-ring-core few-mode fiber[J]. Optics express, 2022, 30(4): 5868–5878.

Article  ADS  Google Scholar 

GUPTA R, KALER R S. Nonlinear Kerr and intermodal four-wave mixing effect in mode-division multiplexed multimode fiber link[J]. Optical engineering, 2019, 58(03): 036108.

Article  ADS  Google Scholar 

SONG K Y, KIM Y H. Characterization of stimulated Brillouin scattering in a few-mode fiber[J]. Optics letters, 2013, 38(22): 4841.

Article  ADS  Google Scholar 

ZHANG Y J, GAO H L, FU X H, et al. Characterization of Brillouin scattering in a few-mode fiber[J]. Acta physica sinica, 2017, 66(2): 7.

Google Scholar 

LI Y Q, LI X J, AN Q, et al. New method to improve the performance of Brillouin optical time domain reflectometer system[J]. Acta optica sinica, 2015, 35(01): 69–78.

Google Scholar 

EZNAVEH Z S, LOPEZ J E A, ZACARIAS J C A, et al. All-fiber few-mode multicore photonic lantern mode multiplexer[J]. Optics express, 2017, 25(14): 16701–16707.

Article  ADS  Google Scholar 

WANG Y, ZHANG C, FU S, et al. Design of elliptical-core five-mode group selective photonic lantern over the C-band[J]. Optics express, 2019, 27(20): 27979–27990.

Article  ADS  Google Scholar 

LI Y Q, ZHAO X, ZHAO L J, et al. Brillouin scattering parameters of different modes in multimode optical fibers[J]. Acta photonica sinica, 2015, 44(3): 27–33.

MathSciNet  Google Scholar 

LI Y Q, FAN H J, ZHANG L X, et al. Single-mode input fiber combined with multimode sensing fiber used in Brillouin optical time-domain reflectometry[J]. Photonics, 2022, 9(6): 398.

Article  Google Scholar 

LI A, WANG Y F, FANG J, et al. Few-mode fiber multi-parameter sensor with distributed temperature and strain discrimination[J]. Optics letters, 2015, 40(7): 12722–12732.

Article  Google Scholar 

WU H, WANG R, LIU D, et al. Few-mode fiber based distributed curvature sensor through quasi-single-mode Brillouin frequency shift[J]. Optics letters, 2016, 41(7): 1514–1517.

Article  ADS  Google Scholar 

WU H, TANG M. Few-mode optical fiber based simultaneously distributed curvature and temperature sensing[J]. Optics express, 2017, 25(11): 12722.

Article  ADS  Google Scholar 

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