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Measurement of Brillouin Backscattering for Distributed Temperature Sensor Applications

  • Kim, Su-Hwan (School of Electrical Engineering and Computer Science, Kyungpook National University) ;
  • Kwon, Hyung-Woo (School of Electrical Engineering and Computer Science, Kyungpook National University) ;
  • Kwon, Hyun-Ho (Mine Reclamation Corporation) ;
  • Jang, Hang-Seok (Mine Reclamation Corporation) ;
  • Kim, Jee-Hyun (School of Electrical Engineering, College of IT engineering, Kyungpook National University) ;
  • Kang, Shin-Won (School of Electrical Engineering, College of IT engineering, Kyungpook National University)
  • Received : 2010.04.30
  • Accepted : 2010.12.15
  • Published : 2011.01.31

Abstract

We present measurements of the Brillouin frequency shift in an optical fiber using a 1550 nm distributed feedback laser diode(DFB-LD) as a light source. By modulating the probe light with an electro-optic modulator, we confirm the stimulated Brillouin gain spectrum(BGS) and spontaneous BGS using the coherent detection method. We also confirm the applicability of the technique to distributed temperature sensors that measure the change in Brillouin frequency shift due to temperature variations.

Keywords

References

  1. Kyung-jin Lee, Jae-hee Park, and Shin-won Kang, “The measurement of the internal strain of concrete specimen using optical fiber interferometric sensors”, Journal of Korean Sensors Society, vol. 10, no. 6, pp. 32-37, 2001.
  2. J. Smith, A. Brown, M. DeMerchant, and X. Bao, “Simultaneous distributed strain and temperature measurement”, Appl. Opt., vol. 38, pp. 5372-5377, 1997.
  3. M. N. Alahbabi, Y. T. Cho, and T. P. Newson, “100km distributed temperature sensor based on coherent detection of spontaneous Brillouin backscatter”, Meas. Sci. Technol., vol. 15, pp. 1544-1547, 2004. https://doi.org/10.1088/0957-0233/15/8/020
  4. Se-jong Baik, Il-bum Kwon, Chul Chung, and Jaewang Yu, “Development of intrusion detection technique using fiber optic ROTDR sensor”, Journal of Korean Sensors Society, vol. 11, no. 4, pp. 19-27, 2002.
  5. Il-bum Kwon, Chi-yeop Kim, Man-yong Choi, and Jeawang Yu, "Development of fiber optic BOTDA sensor for intrusion detection", Journal of Korean Sensors Scociety, vol. 10, no. 3, pp. 16-25, 2001.
  6. K.T.V. Grattan and Dr. T. Sun, “Fiber optic sensor technology: an overview”, Sensors and Actuators, vol. 82, no. 1, pp. 40-61, 2000. https://doi.org/10.1016/S0924-4247(99)00368-4
  7. D. Inaudi and B. Glisic, "Integration of distributed strain and temperature sensors in composite coiled tubing", SPIE, Smart Structures and Materials Conference, San Diego, USA, 2006.
  8. T. Kurashima and M. Tateda, “Thermal effects on the Brillouin frequency shift in jacketed optical silica fibers”, Appl. Optics, vol. 29, no. 15, pp. 2219-2222, 1990. https://doi.org/10.1364/AO.29.002219
  9. V. leocoeuche, D. J. Webb, C. N. Pannell, and D. A. Jackson, “Transient response in high-resolution Brillouin-based distributed sensing using probe pulse shorter than the acoustic relaxation time”, Opt. Lett., vol. 25, no. 3, pp. 156-158, 2000. https://doi.org/10.1364/OL.25.000156
  10. R. W. Boyd, Nonliner optics 2nd ed., Academic Press, San Diego, Chap. 9, 2003.
  11. Y. R. Shen, The principles of nonlinear optics, Wiley, New York, Chap. 11, 1984.
  12. C. L. Tang, “Saturation and spectral characteristics of the stokes emission in the stimulated brillouin process”, J. Appl. Phys., vol. 37, pp. 2945-2955, 1966. https://doi.org/10.1063/1.1703144
  13. P. C. Wait and T. P. Newson, “Landau-Placzek ratio applied to distributed fiber sensing”, Optics communication, vol. 122, no. 6, pp. 141-146, 1996. https://doi.org/10.1016/0030-4018(95)00557-9