Browse > Article
http://dx.doi.org/10.12989/sem.2013.46.1.019

Optimal design of Base Isolation System considering uncertain bounded system parameters  

Roy, Bijan Kumar (Department of Civil Engineering, Bengal Engineering and Science University)
Chakraborty, Subrata (Department of Civil Engineering, Bengal Engineering and Science University)
Publication Information
Structural Engineering and Mechanics / v.46, no.1, 2013 , pp. 19-37 More about this Journal
Abstract
The optimum design of base isolation system considering model parameter uncertainty is usually performed by using the unconditional response of structure obtained by the total probability theory, as the performance index. Though, the probabilistic approach is powerful, it cannot be applied when the maximum possible ranges of variations are known and can be only modelled as uncertain but bounded type. In such cases, the interval analysis method is a viable alternative. The present study focuses on the bounded optimization of base isolation system to mitigate the seismic vibration effect of structures characterized by bounded type system parameters. With this intention in view, the conditional stochastic response quantities are obtained in random vibration framework using the state space formulation. Subsequently, with the aid of matrix perturbation theory using first order Taylor series expansion of dynamic response function and its interval extension, the vibration control problem is transformed to appropriate deterministic optimization problems correspond to a lower bound and upper bound optimum solutions. A lead rubber bearing isolating a multi-storeyed building frame is considered for numerical study to elucidate the proposed bounded optimization procedure and the optimum performance of the isolation system.
Keywords
stochastic earthquake; Base Isolation; bounded uncertainty; optimization;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Baratta, A. and Corbi, O. (2002), "On the dynamic behaviour of elastic-plastic structures equipped with pseudoelastic SMA reinforcements", International Journalof Computational Materials Science, 25(1-2), 1-13.   DOI   ScienceOn
2 Baratta, A. and Corbi, O. (2003), "Dynamic response and control of hysteretic structures", International Journal of Simulation Modelling Practice and Theory, 11(5), 371-385.   DOI   ScienceOn
3 Baratta, A. and Corbi, I. (2004), "Optimal design of base-isolators in multi-storey buildings", Computers and Structures, 82(23-26), 2199-2209.   DOI   ScienceOn
4 Bouc, R. (1967), "Forced vibration of mechanical systems with hysteresis", Proceedings of the 4th Conference on Nonlinear Oscillation, Czechoslovakia, Prague, September.
5 Lutes, L.D. and Sarkani, S. (1997), Stochastic analysis of structural and mechanical vibrations, Prentice Hall, NJ.
6 Matsagar, V.A. and Jangid, R.S. (2004), "Influence of isolator characteristics on the response of baseisolated structures", Engineering Structures, 26(12), 1735-1749.   DOI   ScienceOn
7 McWilliam, S. (2001), "Anti-optimisation of structures using interval analysis", Computers and Structures, 79(4), 421-430.   DOI   ScienceOn
8 Nagai, T. and Nishitani, A. (2005), "Equivalent linearization approachto probabilistic response evaluation for base-isolated buildings," Proceedings of the 9th International Conference on Structural Safety and Reliability ICOSSAR, Eds. G. Augusti, G.I. Schueller, M. Ciampoli, Millpress, Rome, June.
9 Nigam, N.C. (1972), "Structural optimization in random vibration environment", AIAA Journal, 10(4), 551- 553.   DOI
10 Papadimitriou, C., Katafygiotis, L.S. and Au, S.K. (1997), "Effects of structural uncertainties on TMD design: A reliability based approach", Journal of Structural Control, 4(1), 65-88.   DOI
11 Qiu, Z. and Wang, X. (2003), "Comparison of dynamic response of structures with uncertain-but-bounded parameters using non probabilistic interval analysis method and probabilistic approach", Int. Journal of Solids and Structures, 40(20), 5423-5439.   DOI   ScienceOn
12 Roberts, J.B. and Spanos, P.D. (2003), Random Vibration and Statistical Linearization, John Wiley and Sons, New York.
13 Schueller, G.I. and Jensen, H.A. (2008), "Computational methods in optimization considering uncertaintiesan overview", Computer Method in Applied Mechanics and Engineering, 198(1), 2-13.   DOI   ScienceOn
14 Scruggs, J.T., Taflanidis, A.A. and Beck, J.L. (2006), "Reliability-based control optimization for active base isolation systems", Structural Control and Health Monitoring, 13(2-3), 705-723.   DOI   ScienceOn
15 Soong, T.T. and Dargush, G.F. (1997), Passive Energy Dissipation Systems in Structural Engineering, John Wiley and Sons, New York.
16 Chaudhuri, A. and Chakraborty, S. (2004), "Sensitivity evaluation in seismic reliability analysis of structures", Computer Methods in Applied Mechanics and Engineering, 193(1-2), 59-68.   DOI   ScienceOn
17 Bucher, C. (2009), "Probability-based optimal design of friction-based seismic isolation devices", Structural Safety, 31(6), 500-507.   DOI   ScienceOn
18 Buckle, I.G. and Mayes, R.L. (1990), "Seismic isolation: history, application, and performance-a world view", Earthquake Spectra, 6(2), 161-201.   DOI
19 Chakraborty, S. and Roy, B.K. (2011), "Reliability based optimum design of tuned mass damper in seismic vibration control of structures with bounded uncertain parameters", Probabilistic Engineering Mechanics, 26(2), 215-221.   DOI   ScienceOn
20 Chaudhuri, A. and Chakraborty, S. (2006), "Reliability of linear structures with parameter uncertainty under non-stationary earthquake", Structural Safety, 28(3), 231-246.   DOI   ScienceOn
21 Chen, S.H. and Zhang, X.M. (2006), "Dynamic response of closed-loop system with uncertain parameters using interval finite-element method", ASCE Journal of Engineering Mechanics, 132(8), 830-840.   DOI   ScienceOn
22 Chen, S.H., Song, M. and Chen, Y.D. (2007), "Robustness analysis of responses of vibration control structures with uncertain parameters using interval algorithm", Structural Safety, 29(2), 94-111.   DOI   ScienceOn
23 Constantinou, M.C. and Tadjbakhsh, I.G. (1985), "Hysteretic dampers in base isolation: random approach", ASCE Journal of Structural Engineering, 111(4), 705-721.   DOI   ScienceOn
24 Debbarma, R., Chakraborty, S. and Ghosh, S. (2010), "Unconditional reliability based design of tuned liquid column dampers under stochastic earthquake load considering system parameter uncertainties", Journal of Earthquake Engineering, 14(7), 970-988.   DOI   ScienceOn
25 Housner, G.W., Bergman, L.A., Caughey, T.K., Chassiakos, A.G., Claus, R.O., Masri, S.F., Skelton, R.E., Soong, T.T., Spencer, Jr., B.F. and Yao, J.T.P. (1997), "Structural control: past, present and future", ASCE Journal of Engineering Mechanics, 123(9), 897-971.   DOI
26 Taflanidis, A.A., Jeffrey, T.S. and Beck, J.L. (2008b), "Probabilistically robust nonlinear design of control systems for base-isolated structures", Structural Control and Health Monitoring, 15(5), 697-719.   DOI   ScienceOn
27 Spencer, Jr., B.F. and Nagarajaiah, S. (2003), "State of the art of structural control", ASCE Journal of Structural Engineering, 129(7), 845-856.   DOI   ScienceOn
28 Symans, M.D. and Constantinou, M.C. (1999), "Semi-Active Control Systems for Seismic Protection of Structures: A State-of-the-Art Review", Engineering Structures, 21(6), 469-487.   DOI   ScienceOn
29 Taflanidis, A.A., Scruggs, J.T. and Beck, J.L. (2008a), "Reliability-based performance objectives and probabilistic robustness in structural control applications", ASCE Journal of Engineering Mechanics, 134(4), 291-301.   DOI   ScienceOn
30 Taflanidis, A.A. and Jia, G. (2011), "A simulation-based framework for risk assessment and probabilistic sensitivity analysis of base-isolated structures", Earthquake Engineering and Structure Dynamics, 40(14), 1629-1651.   DOI   ScienceOn
31 Tajimi, H.A. (1960), "Statistical method of determining the maximum response of a building structure during an earthquake", Proceedings of the 2nd World Conference on Earthquake Engineering, Tokyo, July.
32 Wen, Y.K. (1976), "Method of random vibration of hysteretic systems", ASCE Journal of Engineering Mechanics, 102(2), 249-263.
33 Zhao, Y.G., Ono, T. and Idota, H. (1999), "Response uncertainty and time-variant reliability analysis for hysteretic MDF structures", Earthquake Engineering and Structure Dynamics, 28(10), 1187-1213.   DOI
34 Zhou, J., Wen, C. and Cai, W. (2006), "Adaptive Control of a base isolated System for protection of building Structures", Journal of Vibration and Acoustics, 128(2), 261-268.   DOI   ScienceOn
35 Zhou, J. and Wen, C. (2008), "Control of a Hysteretic Structural System in Base Isolation Scheme, Adaptive back stepping Control of Uncertain Systems", Lecture Notes in Control & Information Sciences, 372, 199-213.
36 Jensen, H.A. (2005), "Design and Sensitivity analysis of dynamical systems subjected to stochastic loading", Computers and Structures, 83(14), 1062-1075.   DOI   ScienceOn
37 Hurtado, J.E. and Barbat, A.H. (2000), "Equivalent linearization of the Bouc-Wen hysteretic model", Engineering Structures, 22(9), 1121-1132.   DOI   ScienceOn
38 Jangid, R.S. and Datta, T.K. (1995), "Seismic behaviour of base-isolated buildings: a state-of-the-art review", Proceedings of the ICE - Structures and Buildings, 110(2), 186-203.   DOI
39 Jangid, R.S. (2010), "Stochastic response of building frames isolated by lead-rubber bearings", Structural Control and Health Monitoring, 17(1), 1-22.   DOI   ScienceOn
40 Jensen, H.A. and Sepulveda, J.G. (2011), "On the reliability-based design of structures including passive energy dissipation systems", Structural Safety, 34(1), 390-400.
41 Juhn, G. and Manolis, G.D. (1992), "Stochastic sensitivity and uncertainty of secondary systems in baseisolated structures", Journal of Sound and Vibration, 159(2), 207-222.   DOI   ScienceOn
42 Karabork, T. (2011), "Performance of multi-storey structures with high damping rubber bearing Base Isolation systems", Structural Engineering and Mechanics, 39(3), 399-410.   DOI   ScienceOn
43 Kanai, K. (1957), "Semi-empirical formula for the seismic characteristics of the ground", Bulletin of Earthquake Research Institute, University of Tokyo, 35, 309-325.
44 Kelly, J.M. (1986), "A seismic base isolation: review and bibliography", Soil Dynamics and Earthquake Engineering, 5(3), 202-216.   DOI   ScienceOn
45 Kawano, K., Arakawa, K., Thwe, M. and Venkastaramana, K. (2002), "Seismic response evaluations of base-isolated structures with uncertainties", Proceedings of the Second International Conference on Structural Stability and Dynamics, Singapore, December.
46 Lin, S., Ahmadi, G. and Tadjbakhsh, I.G. (1990), "Responses of base-isolated shear beam structures to random excitations", Probabilistic Engineering Mechanics, 5(1), 35-46.   DOI   ScienceOn