Acknowledgement
Supported by : Korea Science & Engineering Foundation (KOSEF)
References
- Bang, J.M. (1994), 'Active control of fixed offshore structure', Master's Thesis. Dept. of Civil and Environ. Eng., Korea Adv. Inst. of Sci. and Tech., Korea
- Kim, D.H., Han, S.H., Park, W.S., Seo, S.N. and Lee, I.W. (2001), 'Learning rule of neuro-controller for structural control', Korean Society of Civil Engineers, 21(5-1), 657-663
- Kim, D.H., Kim, D., Chang, S. and Jung, H.Y. (2008), 'Active control strategy of structures based on lattice type probabilistic neural network', Probabilist. Eng. Mech., 23, 45-50 https://doi.org/10.1016/j.probengmech.2007.10.004
- Kim, D.H., Seo, S.N. and Lee, I.W. (2004), 'Optimal neurocontroller for nonlinear benchmark structure', J. Eng. Mech., ASCE, 130, 424-429 https://doi.org/10.1061/(ASCE)0733-9399(2004)130:4(424)
- Kim, D.K., Chang, S.K. and Chang, S.K. (2007), 'Vibration control of offshore structures for wave response reduction using probabilistic neural network', Workshop on High Performance Data Mining and Application (HPDMA'07), Nanjing, China, 222-232
- Kim, D.K. (2005), Dynamics of Structures. Goomibook, 425-440
- Li, H.J., Hu, S.J. and Takayama, T. (1999), 'The optimal design of TMD for offshore structures', China Ocean Eng., 13(2), 133-144
- Madan, A. (2005), 'Vibration control of building structures using self-organizing and self-learning neural networks' J. Sound Vib., 287(4/5), 759-784 https://doi.org/10.1016/j.jsv.2004.11.031
- Mohamed, A.R. (1996), 'Structural control of a steel jacket platform', Struct. Eng. Mech., 4(2), 125-138 https://doi.org/10.12989/sem.1996.4.2.125
- Morison, J.R., O'Brien, M.P., Johnson, J.W. and Schaaf, S.A. (1950), 'The forces exerted by surface waves on piles', AIME Trans, Petroleum Branch, 189, 149-154
- Petersen, N.R. (1980), 'Design of large scale tuned mass dampers', In Structural Control, Liepholz HH North-Holland, Amsterdam, 581-598
- Soong, T.T. (1990), 'Active structural control', Longman Scientific and Technical
- Specht, D.F. (1990), 'Probabilistic neural networks', Neural Networks, 3, 109-118 https://doi.org/10.1016/0893-6080(90)90049-Q
- Wang, S.Q., Li, H.J., Ji, C.Y. and Jiao, G.Y. (2002), 'Energy analysis for TMD-structure systems subjected to impact loading', China Ocean Eng., 16(3), 301-310
- Yun, C.B., Choi, J.H. and Ryu, J.S. (1985), 'Dynamic analysis of fixed offshore structures subjected to random waves', Korean Soc. Civil Eng., 5(2), 1-9 https://doi.org/10.1080/03601217708907309
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