Acknowledgement
Supported by : Natural Sciences Fund of China
References
- Berman, A. and Nagy, E.J. (1983), "Improvements of large analytical model using test data", AIAA J., 21, 1168-1173. https://doi.org/10.2514/3.60140
- Carne, T.G. and Dohrmann, C.R. (1995), "A modal test design strategy for model correlation", In: Bathel, ed. Proc 13th Int. Modal Analysis Conf, New York: Union College, Schenectady, 927-933.
- Cawley, P. and Adams, R.D. (1979), "The location of defects in structures from measurements of natural frequencies", J. Strain Anal., 14, 49-57. https://doi.org/10.1243/03093247V142049
- Doebling, S.W. (1998), "A summary review of vibration - based damage identification methods", Shock Vib., 30(2), 91-105. https://doi.org/10.1177/058310249803000201
- Duan, Z.D., Yan, G.R., Ou, J.P. and Spencer, Jr. B.F. (2005), "Damage localization in ambient vibration by constructing proportional flexibility matrix", J. Sound Vib., 284, 455-466. https://doi.org/10.1016/j.jsv.2004.06.046
- Fedorov, V.V. (1972), Theory of Optimal Experiments, New York: Academic, translated and edited by W.J. Studden and E. M. Klimko, 28.
- Friswell, M.I. and Mottershead, J.E. (1995), Finite element model updating in structural dynamics, Kluwer Academic Publishers, Dordrecht.
- Gao, W.C., Liu, W. and Zou, J.X. (2004), "Damage detection methods based on changes of vibration parameters: a summary review", J. Vib. Shock, 23(4), 1-17 (in Chinese).
- Gao, Y. and Spencer, Jr. B.F. (2002), "Damage localization under ambient vibration using changes in flexibility", J. Earthq. Eng., 1(1), 136-144.
- Hou, Z.R. and Lu, Z.S. (2003), "Particle swarm optimization with applications based on matlab", Comput. Simulat., 20(10), 68-70 (in Chinese).
- Kammer, D.C. (1991), "Sensor placement for on-orbit modal identification and correlation of large space structures", J. Guid. Control Dynam., 14(2), 251-259. https://doi.org/10.2514/3.20635
- Kennedy, J. and Eberhart, R.C. (1995), "Particle swarm optimization", Proc. of IEEE Conf. on Neural Networks, Piscataway, NJ, IV: 1942-1948.
- Law, S.S., Shi, Z.Y. and Zhang, L.M. (1998), "Structural damage detection from incomplete and noisy test data", J. Eng. Mech. ASCE, 124(11), 1280-1288. https://doi.org/10.1061/(ASCE)0733-9399(1998)124:11(1280)
- Link, M. (1999), "Updating of analytical models-review of numerical procedures and application aspects", Proc. of Structural Dynamics Forum, Los Alamos.
- Mottershead, J.E. and Friswell, M.I. (1993), "Model updating in structural dynamics: a survey", J. Sound Vib., 167, 347-375. https://doi.org/10.1006/jsvi.1993.1340
- Pandey, A.K. and Biswas, M. (1994), "Damage detection in structures using changes in flexibility", J. Sound Vib., 169(1), 3-17. https://doi.org/10.1006/jsvi.1994.1002
- Pandey, A.K. and Biswas, M. (1995), "Experimental verification of flexibility difference method for locating damage in structures", J. Sound Vib., 184(2), 311-328. https://doi.org/10.1006/jsvi.1995.0319
- Parsopoulos, K.E. and Vrahatis, M.N. (2002), Particle swarm optimization method for constrained optimization problems, Intelligent Technologies: from theory to applications, Amsterdam: IOS Press, 214-220.
- Qi, B.H., Wu, R.F., Xie, H.C. and Li, G.H. (2001), "A flexibility matrix method for damage identification of truss structure", Comput. Mech., 18(1), 42-47 (in Chinese).
- Salawu, O.S. (1997), "Detection of structural damage through changes in frequency: a review", Eng. Struct., 19, 718-723. https://doi.org/10.1016/S0141-0296(96)00149-6
- Shi, Y.H. and Eberhart, R.C. (1999), "Empirical study of particle swarm optimization", Proc. of Congress on Evolutionary Computation, Piscataway, NJ: IEEE Service Center, 1945-1949.
- Shi, Z.Y. (2002), "Structural damage detection from limited sensor information", J. Vib. Eng., 15(2), 203-206 (in Chinese).
- Stutz, L.T., Castello, D.A. and Rochinha, F.A. (2995), "A flexibility-based continuum damage identification approach", J. Sound Vib., 279, 641-667. https://doi.org/10.1016/j.jsv.2003.11.043
- Yan, A. and Golinval, J.C. (2005), "Structural damage localization by combining flexibility and stiffness methods", Eng. Struct., 27, 1752-1761. https://doi.org/10.1016/j.engstruct.2005.04.017
- Yin, T., Zhu, H.P. and Yu, L. (2007), "Noise analysis for sensitivity-based structural damage detection", Appl. Math. Mech-Engl., 28(6), 741-750. https://doi.org/10.1007/s10483-007-0604-3
- Zhang, D.W. and Wei, F.X. (1999), Model updating and damage detection, Beijing: Science Press, 1999 (in Chinese).
- Zhao, J. and DeWolf, J.T. (1999), "Sensitivity study for vibrational parameters used in damage detection", J. Struct. Eng., 125(4), 410-416. https://doi.org/10.1061/(ASCE)0733-9445(1999)125:4(410)
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