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The application of a fuzzy inference system and analytical hierarchy process based online evaluation framework to the Donghai Bridge Health Monitoring System

  • Dan, Danhui (Department of Bridge Engineering, Tongji University) ;
  • Sun, Limin (State Key Laboratory of Disaster Reduction in Civil Engineering, Tongji University) ;
  • Yang, Zhifang (Shanghai Municipal Engineering Research Institute (SHMERI)) ;
  • Xie, Daqi (Donghai Bridge Management Ltd.)
  • Received : 2012.06.10
  • Accepted : 2013.07.29
  • Published : 2014.08.25

Abstract

In this paper, a fuzzy inference system and an analytical hierarchy process-based online evaluation technique is developed to monitor the condition of the 32-km Donghai Bridge in Shanghai. The system has 478 sensors distributed along eight segments selected from the whole bridge. An online evaluation subsystem is realized, which uses raw data and extracted features or indices to give a set of hierarchically organized condition evaluations. The thresholds of each index were set to an initial value obtained from a structure damage and performance evolution analysis of the bridge. After one year of baseline monitoring, the initial threshold system was updated from the collected data. The results show that the techniques described are valid and reliable. The online method fulfills long-term infrastructure health monitoring requirements for the Donghai Bridge.

Keywords

References

  1. Catbas, F.N. and Aktan, A.E. (2002), "Condition and damage assessment: issues and some promising indices", J. Struct. Eng. - ASCE, 128(8), 1026-1036. https://doi.org/10.1061/(ASCE)0733-9445(2002)128:8(1026)
  2. Chan, F.T.S., Kumar, N., Tiwari, M.K., Lau, H.C.W. and Choy, K.L. (2008), "Global supplier selection: a fuzzy-AHP approach", Int. J. Prod. Res., 46(14), 3825-3857. https://doi.org/10.1080/00207540600787200
  3. Chang, S.P. (2006), "Application of the structural health monitoring system to the long span cable-supported bridges", Proceedings of the 3rd international conference on bridge maintenance, safety and management. Porto. Portugal, July.
  4. Dagdeviren, M. and Yuksel, I. (2008), "Developing a fuzzy analytic hierarchy process (AHP) model for behavior-based safety management", Inform. Sciences, 178(6), 1717-1733. https://doi.org/10.1016/j.ins.2007.10.016
  5. Dan, D. and Sun, L.M. (2004), "A modal identification based on cross power spectra density and its application on the ASCE SHM benchmark", Earthq. Eng. Eng. Vib., 24(4), 56-61, (in Chinese).
  6. Dan, D. and Sun, L.M. (2004), "Research on structure modal identification under online monitoring conditions", Earthq. Eng. Eng. Vib., 24(3), 82-88, (in Chinese).
  7. Dan, D. and Sun, L.M. and Cheng, W. (2004), "Online bridge linguistic monitoring methods based on mamdani fuzzy inference systems", Proceeding of the 2nd international conference on bridge maintenance, safety and management, Kyoto, Oct.
  8. Dan, D., Sun, L.M. and Li, J.H. (2006), "Structural damage analysis for SHM system design of bridge under the losing of pretension condition bridge", Proceeding of the 3th international conference on bridge maintenance, safety and management, Porto, Portugal, July.
  9. Dunn, J.C. (1974), "A Fuzzy relative of the ISODATA process and its use in detecting compact well-separated cluster". J. Cybernetics, 3(3), 29-43.
  10. Gattulli, V. and Chiaramonte, L. (1996), "Condition assessment by visual inspection for a bridge management system", Comput. - Aided Civil Infrastruct. Eng., 20(2), 95-107.
  11. Headquarter of Donghai Bridge Project (2005), Report on design of structural health monitoring system for Donghai Bridge, Project report of Donghai Bridge, 30-45, (in Chinese).
  12. Hsieh, K.H., Halling, M.W. and Barr, P.J. (2006), "Overview of vibrational structural health monitoring with representative case studies", J. Bridge Eng., 7(6), 707-715.
  13. Huang, R. (2004), "Donghai Bridge - design and construction", Proceedings of the IABSE Symposium 2004, Shanghai, Sept.
  14. Kawamura, K. (2003), "Condition state evaluation of existing reinforced concrete bridges using neuro-fuzzy hybrid system", Comput. Struct., 81(18-19),1931-1940. https://doi.org/10.1016/S0045-7949(03)00213-X
  15. Kitagawa, M., Suzuki, S. and Okuda, M. (2001), "Assessment of cable maintenance technologies for Hongshu-Shikoku Bridges", J. Bridge Eng., 6(1), 311-319.
  16. Liang, M.T., Wu, J.H. and Liang, C.H. (2001), "Multiple layer fuzzy evaluation for existing reinforced condition bridges", J. Infrastruct. Syst., 7(4), 144-159. https://doi.org/10.1061/(ASCE)1076-0342(2001)7:4(144)
  17. Los Alamos National Laboratory Report, LA-13976-MS (2003), A review of structural health monitoring literature: 1996-2001.
  18. Mehrabi, A.B. (2004), "Health monitoring of cable-stayed bridges-a case study", Proceedings of the 2004 Structures Congress - Building on the Past: Securing the Future.
  19. Mehrabi, A.B. (2005), "In-service evaluation of cable-stayed bridges overview of available methods and findings", Bridge Eng. Solutions, 11(6), 716-724.
  20. Ou, J.P. (2006), "Research and practice of intelligent sensing technologies in civil structural health monitoring in the mainland of China", Proceedings of the Nondestructive Evaluation for Health Monitoring and Diagnostics, San Diego, Feb.
  21. Ratay, R.T. and Wiley, J. (2005), "Review of structural condition assessment", J. Arch. Eng., 12(4), 207-214.
  22. Sasmal, S., Ramanjaneyulu, K. and Gopalakrishnan, S. and Lakshmanan, N. (2005), "Fuzzy logic based condition rating of existing reinforced concrete bridges", J. Perform. Constr. Fac., 20(3), 261-273.
  23. Shi, W.Z., Cheng, P.G., Ko, J.M. and Liu, C. (2002), "GIS-based bridge structural health monitoring and management system", Proceedings of the SPIE - The International Society for Optical Engineering.
  24. Sun, L.M., Dan, D.H., Sun, Z. and Yue, Q. (2006), "Health monitoring system for a cross-sea bridge in Shanghai", Proceedings of the IABSE Symposium 2006, Budapest, Sept.
  25. Wu, H.C. (2006), "Condition assessment of long span cable-stayed bridge", J. Zhejiang Univ. Sci., 36(4), 47-55, (in Chinese).
  26. Vanik, M.W. and Beck, J.L. (2000), "Bayesian probabilistic approach to structural health monitoring", J. Eng. Mech. - ASCE, 126(7), 738-745. https://doi.org/10.1061/(ASCE)0733-9399(2000)126:7(738)

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