Journal of Sensors
Volume 2009 (2009), Article ID 312053, 13 pages
doi:10.1155/2009/312053
Review Article
Plastic Optical Fibre Sensors for Structural Health Monitoring: A Review of Recent Progress
1Department of Civil Engineering, National University of Singapore, Block E1A, #07-03, 1 Engineering Drive 2, 177576, Singapore
2Department of Engineering, University of Liverpool, Brownlow Hill, L69 3GH Liverpool, UK
3The Photon Science Institute, University of Manchester, Oxford Road, M13 9PL Manchester, UK
Received 4 March 2009; Revised 24 June 2009; Accepted 30 July 2009
Academic Editor: Christos Riziotis
Copyright © 2009 K. S. C. Kuang et al. This is an open access article distributed under the
Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
Linked References
- K. S. C. Kuang and W. J. Cantwell, “The use of conventional optical fibres and fibre Bragg gratings for damage detection in advanced composite structures—a review,” Applied Mechanics Reviews, vol. 56, pp. 493–513, 2003.
- G. Zhou and L. M. Sim, “Damage detection and assessment in fibre-reinforced composite structures with embedded fibre optic sensors-review,” Smart Materials and Structures, vol. 11, no. 6, pp. 925–939, 2002. View at Publisher · View at Google Scholar
- K. S. C. Kuang, W. J. Cantwell, and P. J. Scully, “An evaluation of a novel plastic optical fibre sensor for axial strain and bend measurements,” Measurement Science and Technology, vol. 13, no. 10, pp. 1523–1534, 2002. View at Publisher · View at Google Scholar
- A. Babchenko, Z. Weinberger, N. Itzkovich, and J. Maryles, “Plastic optical fibre with structural imperfections as a displacement sensor,” Measurement Science and Technology, vol. 17, no. 5, pp. 1157–1161, 2006. View at Publisher · View at Google Scholar
- N. Takeda, T. Kosaka, and T. Ichiyama, “Detection of transverse cracks by embedded plastic optical fiber in FRP laminates,” in Smart Structures and Materials 1999: Sensory Phenomena and Measurement, vol. 3670 of Proceedings of SPIE, pp. 248–255, 1999.
- N. Takeda, “Characterization of microscopic damage in composite laminates and real-time monitoring by embedded optical fiber sensors,” International Journal of Fatigue, vol. 24, no. 2–4, pp. 281–289, 2002. View at Publisher · View at Google Scholar
- A. Djordjevich, “Curvature gauge as torsional and axial load sensor,” Sensors and Actuators A, vol. 64, no. 3, pp. 219–224, 1998.
- G. Perrone, D. Perla, R. Gaudino, and S. Abrate, “Development of low cost intensity modulated POF based sensors and application to the monitoring of civil structures,” in Proceedings of the 13th Plastic Optical Fibre Conference, pp. 444–449, 2004.
- K. S. C. Kuang and W. J. Cantwell, “The use of plastic optical fibres and shape memory alloys for damage assessment and damping control in composite materials,” Measurement Science and Technology, vol. 14, no. 8, pp. 1305–1313, 2003. View at Publisher · View at Google Scholar
- K. S. C. Kuang and W. J. Cantwell, “The use of plastic optical fibre sensors for monitoring the dynamic response of fibre composite beams,” Measurement Science and Technology, vol. 14, no. 6, pp. 736–745, 2003. View at Publisher · View at Google Scholar
- K. S. C. Kuang, Akmaluddin, W. J. Cantwell, and C. Thomas, “Crack detection and vertical deflection monitoring in concrete beams using plastic optical fibre sensors,” Measurement Science and Technology, vol. 14, no. 2, pp. 205–216, 2003. View at Publisher · View at Google Scholar
- K. S. C. Kuang, M. Maalej, and S. T. Quek, “An application of a plastic optical fiber sensor and genetic algorithm for structural health monitoring,” Journal of Intelligent Material Systems and Structures, vol. 17, no. 5, pp. 361–379, 2006. View at Publisher · View at Google Scholar
- K. S. C. Kuang, S. T. Quek, and M. Maalej, “Detection of impact induce damage in composite beams using plastic optical fibre sensors,” in Proceedings of the 17th KKCNN Symposium on Civil Engineering, pp. 103–110, 2004.
- K. S. C. Kuang, S. T. Quek, and M. Maalej, “Polymer-based optical fiber sensors for health monitoring of engineering structures,” in Smart Structures and Materials 2005: Sensors and Smart Structures, vol. 5765 of Proceedings of SPIE, pp. 656–667, 2005.
- K. S. C. Kuang, S. T. Quek, and M. Maalej, “Assessment of an extrinsic polymer-based optical fibre sensor for structural health monitoring,” Measurement Science and Technology, vol. 15, no. 10, pp. 2133–2141, 2004. View at Publisher · View at Google Scholar
- K. S. C. Kuang, S. T. Quek, and W. J. Cantwell, “Use of polymer-based sensors for monitoring the static and dynamic response of a cantilever composite beam,” Journal of Materials Science, vol. 39, no. 11, pp. 3839–3843, 2004. View at Publisher · View at Google Scholar
- P. J. Scully, D. Jones, and D. A. Jaroszynski, “Femtosecond laser irradiation of polymethylmethacrylate for refractive index gratings,” Journal of Optics A, vol. 5, no. 4, pp. S92–S96, 2003. View at Publisher · View at Google Scholar
- G. D. Peng and P. L. Chu, “Polymer optical fiber sensing,” in Optical Information Processing Technology, vol. 4929 of Proceedings of SPIE, pp. 303–311, 2002.
- Z. Li, H. Y. Tam, L. Xu, and Q. Zhang, “Fabrication of long-period gratings in poly(methyl methacrylate-co-methyl vinyl ketone-co-benzyl methacrylate)-core polymer optical fiber by use of a mercury lamp,” Optics Letters, vol. 30, no. 10, pp. 1117–1119, 2005. View at Publisher · View at Google Scholar
- M. C. J. Large, L. Poladian, G. W. Barton, and M. A. van Eijkelenborg, Microstructured Polymer Optical Fibres, Springer, New York, NY, USA, 2007.
- M. A. van Eijkelenborg, M. C. J. Large, A. Argyros, et al., “Microstructured polymer optical fiber,” Optics Express, vol. 9, pp. 319–327, 2001.
- H. Dobb, D. J. Webb, K. Kalli, A. Argyros, M. C. J. Large, and M. A. van Eijkelenborg, “Continuous wave ultraviolet light-induced fibre Bragg gratings in few- and single-moded microstructured polymer optical fibres,” Optical Letters, vol. 30, pp. 3296–3298, 2005.
- M. P. Hiscocks, M. A. van Eijkelenborg, A. Argyros, and M. C. J. Large, “Stable imprinting of long-period gratings in microstructured polymer optical fibre,” Optics Express, vol. 14, no. 11, pp. 4644–4649, 2006. View at Publisher · View at Google Scholar
- H. Dobb, K. Kalli, and D. J. Webb, “Measured sensitivity of arc-induced long-period grating sensors in photonic crystal fibre,” Optics Communications, vol. 260, no. 1, pp. 184–191, 2006. View at Publisher · View at Google Scholar
- M. C. J. Large, J. Moran, and L. Ye, “The role of viscoelastic properties in strain testing using microstructured polymer optical fibres (mPOF),” Measurement Science and Technology, vol. 20, no. 3, Article ID 034014, 6 pages, 2009. View at Publisher · View at Google Scholar
- K. Murphy, S. Zhang, and V. M. Karbhari, “Effect of concrete based alkaline solutions on short term response of composites,” in Proceedings of the 44th International Society for the Advancement of Material and Process Engineering Symposium and Exhibition, vol. 44, pp. 2222–2230, 1999.
- D. Kalymnios, P. J. Scully, J. Zubia, and H. Poisel, “POF sensor overview,” in Proceedings of the 13th International Plastic Optical Fibres Conference, pp. 237–244, 2004.
- Y. M. Wong, P. J. Scully, R. J. Bartlett, K. S. C. Kuang, and W. J. Cantwell, “Plastic optical fibre sensors for environmental monitoring: biofouling and strain applications,” Strain, vol. 39, no. 3, pp. 115–119, 2003. View at Publisher · View at Google Scholar
- R. J. Bartlett, R. Philip-Chandy, P. Eldridge, D. F. Merchant, R. Morgan, and P. J. Scully, “Plastic optical fiber sensors and devices,” Transactions of the Institute of Measurement and Control, vol. 22, pp. 431–457, 2000.
- S. Kiesel, K. Peters, T. Hassan, and M. Kowalsky, “Calibration of a single-mode polymer optical fiber large-strain sensor,” Measurement Science and Technology, vol. 20, no. 3, Article ID 034016, 7 pages, 2009. View at Publisher · View at Google Scholar
- S. Kiesel, K. Peters, T. Hassan, and M. Kowalsky, “Behaviour of intrinsic polymer optical fibre sensor for large-strain applications,” Measurement Science and Technology, vol. 18, no. 10, pp. 3144–3154, 2007. View at Publisher · View at Google Scholar
- S. Liehr, P. Lenke, K. Krebber, et al., “Distributed strain measurement with polymer optical fibers integrated into multifunctional geotextiles,” in Optical Sensors 2008, vol. 7003 of Proceedings of SPIE, April 2008, article no. 700302. View at Publisher · View at Google Scholar
- P. Lenke, S. Liehr, K. Krebber, F. Weigand, and E. Thiele, “Distributed strain measurement with polymer optical fiber integrated in technical textiles using the optical time domain reflectometry technique,” in Proceedings of the 16th International Conference on Plastic Optical Fibre, pp. 21–24, 2007.
- P. Cortes, W. J. Cantwell, K. S. C. Kuang, and S. T. Quek, “The morphing properties of a smart fibre metal laminate,” Polymer Composites, vol. 29, pp. 1263–1268, 2008.
- K. S. C. Kuang, S. T. Quek, and W. J. Cantwell, “Morphing and control of a smart fibre metal laminate utilizing plastic optical fibre sensor and Ni-Ti sheet,” in Proceedings of the 17th International Conference on Composite Materials, 2009.
- K. S. C. Kuang, S. T. Quek, C. Y. Tan, and S. H. Chew, “Plastic optical fiber sensors for measurement of large strain in geotextile materials,” Advanced Materials Research, vol. 47–50, pp. 1233–1236, 2008.
- I. R. Husdi, K. Nakamura, and S. Ueha, “Sensing characteristics of plastic optical fibres measured by optical time-domain reflectometry,” Measurement Science and Technology, vol. 15, no. 8, pp. 1553–1559, 2004. View at Publisher · View at Google Scholar
- K. Nakamura, I. R. Husdi, and S. Ueha, “Memory effect of POF distributed strain sensor,” in Second European Workshop on Optical Fibre Sensors, vol. 5502 of Proceedings of SPIE, pp. 144–147, 2004. View at Publisher · View at Google Scholar
- T. Fukumoto, K. Nakamura, and S. Ueha, “A POF-based distributed strain sensor for detecting deformation of wooden structures,” in 19th International Conference on Optical Fibre Sensors, vol. 7004 of Proceedings of SPIE, 2008, article no. 700469. View at Publisher · View at Google Scholar
- K. Krebber, P. Lenke, S. Liehr, J. Witt, and M. Schukar, “Smart technical textiles with integrated POF sensors,” in Smart Sensor Phenomena, Technology, Networks, and Systems 2008, vol. 6933 of Proceedings of SPIE, 2008, article no. 69330V. View at Publisher · View at Google Scholar
- P. Lenke, S. Liehr, K. Krebber, F. Weigand, and E. Thiele, “Distributed strain measurement with polymer optical fiber integrated in technical textiles using the optical time domain reflectometry technique,” in Proceedings of the 16th International Conference on Plastic Optical Fibre, pp. 21–24, 2007.
- M. Silva-Lopez, A. Fender, W. N. MacPherson, et al., “Strain and temperature sensitivity of a singlemode polymer optical fibre,” Optics Letters, vol. 30, pp. 3129–3131, 2005.
- H. Poisel, “POF strain sensor using phase measurement techniques,” in Smart Sensor Phenomena, Technology, Networks, and Systems 2008, vol. 6933 of Proceedings of SPIE, 2008, article no. 69330Y. View at Publisher · View at Google Scholar
- K. Krebber, P. Lenke, S. Liehr, et al., “Technology and applications of smart technical textiles based on POF,” in Proceedings of the 17th International Conference on Plastic Optical Fibre, 2008.
- H. Y. Liu, H. B. Liu, and G. D. Peng, “Strain sensing characterization of polymer optical fibre Bragg gratings,” in 17th International Conference on Optical Fibre Sensors, vol. 5855 of Proceedings of SPIE, pp. 663–666, 2005. View at Publisher · View at Google Scholar
- H. B. Liu, H. Y. Liu, G. D. Peng, and P. L. Chu, “Strain and temperature sensor using a combination of polymer and silica fibre Bragg gratings,” Optics Communications, vol. 219, no. 1–6, pp. 139–142, 2003. View at Publisher · View at Google Scholar
- K. O. Hill, Y. Fuji, D. C. Johnson, and B. S. Kawasaki, “Photosensitivity in optical fiber waveguides, application to reflection filter fabrication,” Applied Physics Letters, vol. 32, pp. 647–649, 1978.
- G. Meltz, G. G. Morey, and W. H. Glenn, “Formation of Bragg grating in optical fibers by a transverse holographic method,” Optics Letters, vol. 14, pp. 823–825, 1989.
- D. Hwang, L. V. Nguyen, D. S. Moon, and Y. J. Chung, “Intensity-based optical fiber strain sensor,” Measurement Science and Technology, vol. 20, Article ID 034020, 6 pages, 2009.
- M. de Vries, V. Bhatia, T. D'Alberto, V. Arya, and R. O. Claus, “Photoinduced grating-based optical fiber sensors for structural analysis and control,” Engineering Structures, vol. 20, no. 3, pp. 205–210, 1998.