Laser & Optoelectronics Progress, Volume. 58, Issue 13, 1306008(2021)

Progresses of Anti-Interference-Fading Technologies for Rayleigh-Scattering-Based Optical Fiber Sensing

Shengtao Lin1, Zinan Wang1,2、*, Ji Xiong1, Yue Wu3, and Yunjiang Rao1,4
Author Affiliations
  • 1Key Laboratory of Optical Fiber Sensing & Communications (Education Ministry of China), University of Electronic Science & Technology of China (UESTC), Chengdu , Sichuan 611731, China
  • 2Center for Information Geoscience, UESTC, Chengdu , Sichuan 611731, China
  • 3Research Center of Laser Fusion, China Academy of Engineering Physics, Mianyang , Sichuan 621900, China
  • 4Research Center for Optical Fiber Sensing, Zhejiang Laboratory, Hangzhou , Zhejiang 311121, China
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    The phase-sensitive optical time domain reflectometry (Φ-OTDR) utilizes distributed Rayleigh scattering sensing to achieve sensing, and it has the advantages of high sensitivity and fast response speed to environmental disturbances. It has become one of the most important branches in the field of distributed optical fiber sensing. However, the high-coherence lightwave of Φ-OTDR will inevitably induce interference fading during the scattering process, and the corresponding positions will become blind zones for the sensing system. Fading phenomenon has been a research focus in this field for many years. In this paper, we first briefly describe the generation mechanism and mathematical characteristics of interference fading. Then, typical sensing mechanisms of Φ-OTDR are systematically introduced, as well as the influence of interference fading on the sensing signal demodulation. In addition, the research progress of anti-interference fading technologies is comprehensively reviewed. Finally, the future developments of Φ-OTDR are discussed.

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    Shengtao Lin, Zinan Wang, Ji Xiong, Yue Wu, Yunjiang Rao. Progresses of Anti-Interference-Fading Technologies for Rayleigh-Scattering-Based Optical Fiber Sensing[J]. Laser & Optoelectronics Progress, 2021, 58(13): 1306008

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    Paper Information

    Category: Fiber Optics and Optical Communications

    Received: Mar. 1, 2021

    Accepted: May. 21, 2021

    Published Online: Jul. 14, 2021

    The Author Email: Wang Zinan (znwang@uestc.edu.cn)

    DOI:10.3788/LOP202158.1306008

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