Narrowing Brillouin gain spectrum for distortion-free Brillouin optical time-domain analyzers

被引:2
|
作者
Sun, Xizi [1 ]
Hong, Xiaobin [1 ]
Wang, Sheng [1 ]
Wu, Jian [1 ]
Li, Yan [1 ]
机构
[1] Beijing Univ Posts & Telecommun, State Key Lab Informat Photon & Opt Commun, Beijing, Peoples R China
基金
国家重点研发计划;
关键词
distributed fiber optic sensor; stimulated Brillouin scattering; pi-phase shifted pulse; long range; BANDWIDTH REDUCTION; FIBER SENSORS; SCATTERING; DEPLETION;
D O I
10.1117/1.OE.57.6.066104
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A high-performance Brillouin optical time-domain analysis (BOTDA) is achieved using the Brillouin gain bandwidth reduction technique combined with high injected probe power. In the probe branch, dual-tone probe wave with fixed frequency separation is used for enhancing the probe power to +5 dBm. In the pump branch, a differential pi-phase-shift long-pulse width pair is used to narrow the Brillouin gain spectrum. On the basis of high probe power and 2.5-m spatial resolution, the Brillouin gain spectrum can be narrowed to a level of 17 MHz, whereas the Brillouin gain spectrum of conventional single-pulse BOTDA sensor is 51 MHz. As a result, 50-km sensing range with 2.5-m spatial resolution and 1.1-MHz Brillouin frequency shift (BFS) accuracy has been achieved. Meanwhile, the narrowed Brillouin gain spectrum can give rise to sharp rising/falling edge in the BFS profile when the hot spots are introduced, which increases the detection robustness of the small temperature/strain change in the BOTDA system. (C) 2018 Society of Photo-Optical Instrumentation Engineers (SPIE)
引用
收藏
页数:6
相关论文
共 50 条
  • [1] Optimizing Brillouin Optical Time-Domain Analyzers Based on Gain Spectrum Engineering
    Feng, Cheng
    Schneider, Thomas
    JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2020, (159):
  • [2] Brillouin gain bandwidth reduction in Brillouin optical time domain analyzers
    Lin, Wenqiao
    Yang, Zhisheng
    Hong, Xiaobin
    Wang, Sheng
    Wu, Jian
    OPTICS EXPRESS, 2017, 25 (07): : 7604 - 7615
  • [3] Sources of noise in Brillouin optical time-domain analyzers
    Urricelqui, Javier
    Soto, Marcelo A.
    Thevenaz, Luc
    24TH INTERNATIONAL CONFERENCE ON OPTICAL FIBRE SENSORS, 2015, 9634
  • [4] Wideband Dectection of Spontaneous Brillouin Scattering Spectrum in Brillouin Optical Time-Domain Reflectometry
    Lu, Yuangang
    Dou, Rongrong
    Zhang, Xuping
    2008 INTERNATIONAL CONFERENCE ON OPTICAL INSTRUMENTS AND TECHNOLOGY: MICROELECTRONIC AND OPTOELECTRONIC DEVICES AND INTEGRATION, 2009, 7158
  • [5] Incoherent Brillouin Optical Time-Domain Reflectometry With Random State Correlated Brillouin Spectrum
    Ma, Zhe
    Zhang, Mingjiang
    Bao, Xiaoyi
    Liu, Hui
    Zhang, Yongning
    Wang, Yuncai
    IEEE PHOTONICS JOURNAL, 2015, 7 (04):
  • [6] Narrowing Spectral Linewidth in Brillouin Optical Time Domain Analyzers With Adjustable Spatial Resolution
    Wang, Sheng
    Hong, Xiaobin
    Sun, Xizi
    Wu, Jian
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2019, 37 (18) : 4549 - 4554
  • [7] Synthetic Spectrum Approach for Brillouin Optical Time-Domain Reflectometry
    Nishiguchi, Ken'ichi
    Li, Che-Hsien
    Guzik, Artur
    Kishida, Kinzo
    SENSORS, 2014, 14 (03) : 4731 - 4754
  • [8] Impact of optical noises on unipolar-coded Brillouin optical time-domain analyzers
    Gao, Xia
    Yang, Zhisheng
    Wang, Sheng
    Hong, Xiaobin
    Sun, Xizi
    Soto, Marcelo A.
    Wu, Jian
    Thevenaz, Luc
    OPTICS EXPRESS, 2021, 29 (14) : 22146 - 22158
  • [9] Research Progress of Brillouin Optical Time-Domain Analyzers Based on Optical Pulse Coding
    Jin, Simeng
    Yang, Zhisheng
    Hong, Xiaobin
    Wu, Jian
    Guangxue Xuebao/Acta Optica Sinica, 2024, 44 (01):
  • [10] Cyclic coding for Brillouin optical time-domain analyzers using probe dithering
    Iribas, Haritz
    Loayssa, Alayn
    Sauser, Florian
    Llera, Miguel
    Le Floch, Sebastien
    OPTICS EXPRESS, 2017, 25 (08): : 8787 - 8800