Fiber optic intrusion sensing based on coherent optical time domain reflectometry

被引:1
|
作者
Vdovenko, V. S.
Gorshkov, B. G.
机构
关键词
D O I
10.1117/12.753355
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The Raileigh back scattering of a highly coherent laser pulse in a single mode optical fiber has been simulated. An array of retro reflectors was used to simulate a scattering medium. Both amplitude and phase of the reflected waves were random. It has been shown that the reflectometry signal is not smooth (exponential) as in a usual non-coherent reflectometer About 100 percent contrast in a chaotic signal is achievable provided the laser has single frequency, i.e. generation spectrum is limited by pulse duration. This chaotic signal nevertheless is stable in time if phase changes in the sensing fiber are negligible. Any mechanical impact leads to a phase shift in the sensing fiber. Due to local interference scattering signal changes, the location of impact can be easily calculated knowing light velocity in the sensing fiber. In our model, a harmonic in time mechanical influence was applied to the fiber pointwise. The sensitivity in different points of the fiber is quite random, and the same low amplitude impact may be transformed to a positive, negative or nearly zero signal. The reasons of such behavior are discussed as well as the methods to enhance the system sensitivity. The results of computer simulations were compared with experimental data and satisfactory conformity was obtained. In conclusion, the coherent optical time domain reflectometry seems to be very prospective for development of intrusion sensing systems of high (interference) sensitivity, precise impact localization, low error rate and low cost.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] Fiber optic intrusion sensor using coherent optical time domain reflectometer
    Park, J
    Taylor, HF
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS, 2003, 42 (6A): : 3481 - 3482
  • [2] Fiber optic intrusion sensor using coherent optical time domain reflectometer
    Park, J., 1600, Japan Society of Applied Physics (42):
  • [3] Fundamentals of Optical Fiber Sensing Schemes Based on Coherent Optical Time Domain Reflectometry: Signal Model Under Static Fiber Conditions
    Liokumovich, Leonid B.
    Ushakov, Nikolai A.
    Kotov, Oleg I.
    Bisyarin, Mikhail A.
    Hartog, Arthur H.
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2015, 33 (17) : 3660 - 3671
  • [4] Optical frequency domain reflectometry: principles and applications in fiber optic sensing
    Kreger, Stephen T.
    Rahim, Nur Aida Abdul
    Garg, Naman
    Klute, Sandra M.
    Metrey, Daniel R.
    Beaty, Noah
    Jeans, James W.
    Gamber, Robert
    FIBER OPTIC SENSORS AND APPLICATIONS XIII, 2016, 9852
  • [5] Distributed Fiber Optical Sensing of Oxygen with Optical Time Domain Reflectometry
    Eich, Susanne
    Schmaelzlin, Elmar
    Loehmannsroeben, Hans-Gerd
    SENSORS, 2013, 13 (06) : 7170 - 7183
  • [6] Experimental Study of Intrusion Detector Based on SMS Fiber Structure and Optical Time Domain Reflectometry
    Achmadi
    Hatta, Agus Muhamad
    THIRD INTERNATIONAL SEMINAR ON PHOTONICS, OPTICS, AND ITS APPLICATIONS (ISPHOA 2018), 2019, 11044
  • [7] Coherent optical frequency domain reflectometry for interrogation of bend-based fiber optic hydrocarbon sensors
    López, RM
    Spirin, VV
    Shlyagin, MG
    Miridonov, SV
    Beltrán, G
    Kuzin, EA
    Lucero, AM
    OPTICAL FIBER TECHNOLOGY, 2004, 10 (01) : 79 - 90
  • [8] Distributed Fiber Optic Sensing Based on Optical Frequency Domain Reflectometry and Its Application Progress (Invited)
    Wang Yiping
    Zhong Huajian
    Shan Rongyi
    Liang Wenfa
    Peng Zhenwei
    Meng Yanjie
    Liao Changrui
    Fu Cailing
    LASER & OPTOELECTRONICS PROGRESS, 2024, 61 (01)
  • [9] Coherent optical frequency domain reflectometry for interrogation of microbend and macrobend-based fiber optic hydrocarbon sensors
    López, RM
    Spirin, VV
    Shlyagin, MG
    Miridonov, SV
    Márquez, I
    Márquez, A
    SMART STRUCTURES AND MATERIALS 2001: SENSORY PHENOMENA AND MEASUREMENT INSTRUMENTATION FOR SMART STRUCTURES AND MATERIALS, 2001, 4328 : 114 - 121
  • [10] Grating-assisted polarization optical time-domain reflectometry for distributed fiber-optic sensing
    Han, Ming
    Wang, Yunjing
    Wang, Anbo
    OPTICS LETTERS, 2007, 32 (14) : 2028 - 2030