Long-range displacement sensor based on SMS fiber structure and OTDR
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  • 作者:A. Arifin (1) (3)
    A. M. Hatta (2) (4)
    Sekartedjo (2)
    M. S. Muntini (1)
    A. Rubiyanto (1)

    1. Department of Physics
    ; Institut Teknologi Sepuluh Nopember ; Surabaya ; 60111 ; Indonesia
    3. Department of Physics
    ; Hasanuddin University ; Makassar ; 90245 ; Indonesia
    2. Departement of Engineering Physics
    ; Institut Teknologi Sepuluh Nopember ; Surabaya ; 6011 ; Indonesia
    4. Department of Physics
    ; Jazan University ; Jazan ; 45-142 ; Saudi Arabia
  • 关键词:Displacement sensor ; SMS fiber structure ; OTDR
  • 刊名:Photonic Sensors
  • 出版年:2015
  • 出版时间:June 2015
  • 年:2015
  • 卷:5
  • 期:2
  • 页码:166-171
  • 全文大小:408 KB
  • 参考文献:1. Lee, B (2003) Review of the present status of optical fiber sensors. Optical Fiber Technology 9: pp. 57-79 CrossRef
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    3. Gnewuch, H, Smeu, E, Jackson, D A, Podoleanu, A G (2005) Long range extensometer for civil structure monitoring using fibre Bragg gratings. Measurement Science and Technology 16: pp. 2005-2010 CrossRef
    4. Hill, K O, Meltz, G (1997) Fiber Bragg grating technology fundamentals and overview. Journal of Lightwave Technology 15: pp. 1263-1276 CrossRef
    5. Zhao, Y, Liao, Y (2004) Discrimination methods and demodulation techniques for fiber Bragg grating sensors. Optics Lasers in Engineering 41: pp. 1-18 CrossRef
    6. 膼onlagi膰, D, Zavr拧nik, M (1997) Fiber-optic microbend sensor structure. Optics Letters 22: pp. 837-839 CrossRef
    7. Kumar, A, Varshney, R K, Kumar, R (2004) SMS fiber optic microbend sensor structures: effect of the modal interference. Optics Communications 232: pp. 239-244 CrossRef
    8. Wu, Q, Hatta, A M, Wang, P, Semenova, Y, Farrell, G (2011) Use of a bent single SMS fiber structure for simultaneous measurement of displacement and temperature sensing. IEEE Photonics Technology Letters 23: pp. 130-132 CrossRef
    9. Hatta, A M, Semenova, Y, Rajan, G, Farrell, G (2010) A voltage sensor based on a singlemode-multimode-singlemode fiber structure. Microwave and Optical Technology Letters 52: pp. 1887-1890 CrossRef
    10. Wu, Q, Hatta, A M, Semenova, Y, Farrell, G (2009) Use of a single-multiple-single-mode fiber filter for interrogating fiber Bragg grating strain sensors with dynamic temperature compensation. Appied Optics 48: pp. 5451-5458 CrossRef
    11. Hatta, A M, Permana, H E, Setijono, H, Kusumawardhani, A, Sekartedjo, (2013) Strain measurement based on SMS fiber structure sensor and OTDR. Microwave and Optical Technology Letters 55: pp. 2576-2578 CrossRef
    12. Hatta, A M, Indriawati, K, Bestariyan, T, Humada, T, Sekartedjo, (2013) SMS fiber structure for temperature measurement using an OTDR. Photonics Sensors 3: pp. 262-266 CrossRef
    13. Pinto, N M P, Frazao, O, Baptista, J M, Santos, J L (2006) Quasi-distributed displacement sensor for structural monitoring using a commercial OTDR. Optics and Lasers in Engineering 44: pp. 771-778 CrossRef
    14. Tripathi, S M, Kumar, A, Varshney, R K, Kumar, Y, Marin, E, Meunier, J P (2009) Strain and temperature sensing characteristics of single-mode-multimode-single-mode structures. Journal of Lightwave Technology 27: pp. 2348-2356 CrossRef
    15. Hatta, A M, Semenova, Y, Wu, Q, Farrell, G (2010) Strain sensor based on a pair of single-mode-multimode-single-mode fiber structures in a ratiometric power measurement scheme. Applied Optics 49: pp. 536-541 CrossRef
  • 刊物类别:Physics and Astronomy
  • 刊物主题:Chinese Library of Science
    Laser Technology and Physics and Photonics
    Microwaves, RF and Optical Engineering
    Measurement Science and Instrumentation
    Optics, Optoelectronics, Plasmonics and Optical Devices
  • 出版者:University of Electronic Science and Technology of China, co-published with Springer
  • ISSN:2190-7439
文摘
This paper presents a long-range displacement measurement method by using a single-multi-single mode (SMS) fiber structure, attached to a flexible plate between two permanent poles and the optical time domain reflectometer (OTDR)-based interrogator. The SMS fiber structure sensors are prepared with two different configurations, i.e. straight and sinusoidal configurations. It is demonstrated that the displacement sensor can perform a displacement measurement with a range from 0 mm to 150 mm with a resolution of 0.159 mm. The sinusoidal configuration provides a better sensitivity than the straight configuration. The proposed sensor offers a low cost, and it can be implemented for quasi-distributed displacement measurement which is suitable for civil structure monitoring.

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