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FBG sensors for seismic control and detection in extradosed bridges Cover

FBG sensors for seismic control and detection in extradosed bridges

By: Said Saad  
Open Access
|Jul 2021

References

  1. Aubin, S. 2009. Capteur de position innovants: Application aux Systèmes de Transport Intelligents dans le cadre d’un observatoire de trajectoires de véhicules. M.S. thesis, Toulouse University, France.
  2. Hill, K. O., Meltz, G. and Membre, I. E. E. E. 1997. Fiber Bragg grating technology fundamentals and overview. Journal of Lightwave Technology 15(8): 1263–1276.
  3. Kang, D. H., Park, S. O., Hong, S. S. and Kim, C. G. 2005. The signal characteristics of reflected spectra of fiber Bragg grating sensors with strain gradients and grating lengths. NDT&E International 38: 712–718.
  4. Kerrouche, A., Boyle, W. J. O., Sun, T. and Grattan, K. T. V. 2009. Design and in-the field performance evaluation of compact FBG sensor system for structural health monitoring applications. Sensors and Actuators A: Physical 151: 107–112.
  5. Kersey, A. D., Davis, M. A., Patrick, H. J., LeBlanc, M., Koo, K. P., Member, I. E. E. E., Askins, C. G., Putnzm, M. A. and Joseph Friebele, E. 1997. Fiber grating sensors. Journal of Lightwave Technology 15(8): 1442–1463.
  6. Khalil, A. H., Heiza, K. M. and El Nawawy, O. A. 2016. “State of the art review on bridges structural health monitoring applications and future trends”, 11th International Conference on Civil and Architecture Engineering, April 19–21.
  7. Li, L., Tong, X. L., Zhou, C. M., Wen, H. Q., Lv, D. J., Ling, K. and Wen, C. S. 2011. Integration of miniature Fabry-Perot fiber optic sensor with FBG for the measurement of temperature and strain. Optics Communications 284(6): 1612–1615.
  8. Lu, C., Lu, C., Cui, J. and Cui, Y. 2008. Reflection spectra of fiber Bragg grating with random fluctuations. Optical Fiber Technology 14: 97–101.
  9. Measures, R. M., Alavie, T., Maaskant, R., Karr, S., Huang, S., Grant, L., Guha-Thakurta, A., Tadros, G. and Rizkalla, S. 1994. Fiber optic sensing for bridges. 4th International Conference on Short & Medium bridges, Halifax, pp. 8–11.
  10. Palaniappan, J., Wang, H., Ogin, S. L., Thorne, A. M., Reed, G. T., Crocombe, A. D., Rech, Y. and Tjin, S. C. 2007. Changes in the reflected spectra of embedded chirped fibre Bragg gratings used to monitor disbanding in bonded composite joints. Composites Science and Technology 67: 2847–2853.
  11. Piot, S. 2009. Une surveillance d’ouvrages en environnement côtier exemple du pont de Radès – La Goulette à Tunis. Coastal and Maritime Mediterranean Conference, Edition 1, Hannamet, Tunisia, pp. 295–300.
  12. Raikar, U. S., Lalasangi, A. S., Kulkarni, V. K. and AKKi, J. F. 2011. Concentration and refractive index sensor for methanol using short period grating fiber. Optik 122: 89–91.
  13. Rodrigues, C., Félix, C., Lage, A. and Figueiras, J. 2010. Development of a long-term monitoring system based on FBG sensors applied to concrete Bridges. Engineering Structures 32(8): 1993–2002.
  14. Shen, J. and Shen, Y. 2008. Investigation of the structural and spectral characteristics of deposited FBG stacks at elevated temperature. Sensors and Actuators A: Physical 147: 99–103.
  15. Sun, L., Li, H.-N., Ren, L. and Jin, Q. 2007. Dynamic response measurement of offshore platform model by FBG sensors. Sensors and Actuators A: Physical 136: 572–579.
  16. Suresh, R. and Tjin, S. C. 2005. Effects of dimensional and material parameters and cross-coupling on FBG based shear force sensor. Sensors and Actuators A: Physical 120: 26–36.
  17. Vorathin, E., Hafizi, Z. M., Aizzuddin, A. M., Zaini, M. K. A. and Lim, K. S. 2019. Temperature independent chirped FBG pressure transducer with high sensitivity. Optics and Lasers in Engineering 117: 49–56.
Language: English
Page range: 1 - 13
Submitted on: Mar 18, 2019
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Published on: Jul 8, 2021
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2021 Said Saad, published by Professor Subhas Chandra Mukhopadhyay
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.