과제정보
연구 과제 주관 기관 : Chinese Nature Science Foundation
참고문헌
- Breese, D.G. and Gordaninejad, F. (2003), "Semi-active, fail-safe magneto-rheological fluid dampers for mountain bicycles", Int. J. Vehicle Des., 33(1/2/3), 128-138. https://doi.org/10.1504/IJVD.2003.003653
- Choi, S.B., Choi, H.J., Lee, Y.S. and Han, M.S. (2003), "Vibration control of an ER seat suspension for a commercial vehicle", J. Dyn. Syst.-T. ASME, 125, 60-68. https://doi.org/10.1115/1.1542639
-
Choi, S.B., Lee, H.S. and Park, Y.P. (2002), "H
${\infty}$ Control performance of a full-vehicle suspension featuring magnetorheological dampers", Vehicle Syst. Dyn., 38(5), 341-360. https://doi.org/10.1076/vesd.38.5.341.8283 - Choi, S.B., Choi, Y.T. and Park, D.W. (2000), "A sliding mode control of a full-car electrorheological suspension system via hardware in-the-loop simulation", J. Dyn. Syst.-T. ASME, 122, 114-121. https://doi.org/10.1115/1.482435
- Dyke, S.J., Spencer Jr, B.F., Sain, M.K. and Carson, J.D. (1996), "Modeling and control of magnetorheological dampers for seismic response reduction", Smart Mater. Struct., 5, 565-575. https://doi.org/10.1088/0964-1726/5/5/006
- El-Ghezawi, O.M., Zinober, A.S. and Billings, S.A. (1983), "Analysis and design of variable structure systems using a geometric approach", Int. J. Control, 38, 657-671. https://doi.org/10.1080/00207178308933100
- Ericksen, E.O. and Gordaninejad, F. (2003), "A magneto-rheological fluid shock absorber for an off-road motorcycle", Int. J. Vehicle Des., 33(1/2/3),139-152. https://doi.org/10.1504/IJVD.2003.003574
- Gordaninejad, F. and Kelso, S.P. (2000), "Magneto-rheological fluid shock absorbers for HMMWV", Proc. of SPIE Conf. on Smart Structures and Materials, Newport Beach, CA, March.
- Gordaninejad, F. and Kelso, S.P. (2000), "Fail-safe magneto-rheological fluid dampers for off- highway, highpayload vehicles", J. Intel. Mater. Syst. Str., 11(5), 395-406. https://doi.org/10.1106/K90W-1A63-7QA7-6EH4
- Hwang, Y.R. and Tomizuka, M. (1994), "Fuzzy smoothing algorithm for variable structure systems", IEEE T. Fuzzy Syst., 2, 277-284. https://doi.org/10.1109/91.324807
- Inaudi, J.A. (1997), "Modulated homogeneous friction (MHF)", Earthq. Eng. Struct. D., 26, 361-376. https://doi.org/10.1002/(SICI)1096-9845(199703)26:3<361::AID-EQE648>3.0.CO;2-M
- Kim, S.W. and Lee, J.J. (1995), "Design of a fuzzy controller with fuzzy sliding surface", Fuzzy Sets Syst., 71, 359-367. https://doi.org/10.1016/0165-0114(94)00276-D
- Kurimoto, M., Yoshimura, T. and Hino, J. (2000), "An active suspension system of quarter-car models using sliding mode controller", Transactions of the Japan Society of Mechanical Engineers (Series C), 66, 468-475.
- Leitmann, G. (1994), "Semi-active control for vibration attenuation", J. Intel. Mater. Syst. Str., 5, 841-846. https://doi.org/10.1177/1045389X9400500616
- Liu, Y., Gordaninejad, F., Evrensel, C.A., Dogruer, U., Yeo, M.S., Karakas, E.S. and Fuchs, A. (2003), "Temperature dependent skyhook control of HMMWV suspension using a fail-safe magneto-rheological damper", Proc. SPIE Smart Structures and Materials Conf., Industrial and Commercial Applications, Ed. by E.H. Anderson, March, 5054, 332-340.
- Liu, Y., Gordaninejad, F., Evrensel, C.A. and Hitchcock, G. (2001), "An experimental study on fuzzy logic vibration control of a bridge using fail-safe magneto-rheological fluid dampers", Smart Systems for Bridges, Structures, and Highways, Proc. of SPIE Conference on Smart Materials and Structures, Ed. by Chi Liu, 4330, 281-288.
- LORD Materials Business Unit (1999), "Designing with MR fluids", Engineering Note.
- McClamroch, N.H. and Gavin, H.P. (1995), "Closed loop structural control using electrorheological dampers", Proc. of the American Control Conf., Washington D.C.
- Man, P.D., Mistrot, P., Verschueren, J.P. and Preumont, A. (2005), "An investigation of a semi-active suspension for a fork lift truck", Vehicle Syst. Dyn., 43(2), 107-119. https://doi.org/10.1080/00423110412331327852
- Patten, W.N., Kuo, C.C., He, Q., Liu, L. and Sack, R.L. (1994a), "Seismic structural control via hydraulic semiactive vibration dampers (SAVD)", Proc. of the First World Conf. on Struct. Control, International Association for Structural Control, Los Angeles, CA.
- Patten, W.N., Kuo, C.C., He, Q., Liu, L. and Sack, R.L. (1994b), "Suppression of vehicle-induced bridge vibration via hydraulic semiactive vibration dampers", Proc. of the First World Conf. on Structural Control, Pasadena, CA.
- Sean, P.K. (2001), "Experimental characterization of commercially practical magnetorheological fluid damper technology", SPIE Conf. on Smart Structure and Materials, San Diego, CA, March.
- Song, X.B. and Ahmdian, M. (2004), "Study of semiactive adaptive control algorithms with magneto-rheological seat suspension", SAE paper, 2004-01-1648.
- Slotine, J.J. and Sastry, S.S. (1983), "Tracking control of nonlinear systems using sliding surfaces, with application to robot manipulators", Int. J. Control, 38, 465-492. https://doi.org/10.1080/00207178308933088
- Sun, L. and Goto, Y. (1994), "Application of fuzzy theory to variable dampers for bridge vibration control", Proc. First World Conf. Structural Control, Pasadena, CA.
- Wang, E.R., Ma, X.Q., Rakheja, R. and Su, C.Y. (2003), "Semi-active control of vehicle vibration with MRdampers", Proc. of the 42th IEEE Conf. on Decision and Control , Hawaii , USA, December.
- Wang, J.Y. (2001), Theory of Ground Vehicles, 3rd ed. New York: John Wiley
- Yao, G.Z., Yap, F.F., Chen, G., Li, W.H. and Yao, S.H. (2002), "MR damper and its application for semi-active control of vehicle suspension system", Mechatronics, 12, 963-973. https://doi.org/10.1016/S0957-4158(01)00032-0
- Yang, G., Spencer, B.F., Carlson, J.D. and Sain, M.K. (2002), "Large-scale MR fluid dampers: modeling and dynamic performance considerations", Eng. Struct., 24, 309-323. https://doi.org/10.1016/S0141-0296(01)00097-9
- Yokoyama, M., Hedrick, J.H. and Toyama, S. (2001), "A model following sliding mode controller for semiactive suspension systems with MR dampers", Proc. of the American Control Conf., Arlington, VA, June.
피인용 문헌
- A review of fuzzy methods in automotive engineering applications vol.7, pp.3, 2015, https://doi.org/10.1007/s12544-015-0179-z
- Beam-rotating machinery system active vibration control using a fuzzy input estimation method and LQG control technique combination vol.10, pp.1, 2009, https://doi.org/10.12989/sss.2012.10.1.015
- Adaptive fuzzy sliding mode control of seismically excited structures vol.19, pp.5, 2009, https://doi.org/10.12989/sss.2017.19.5.577
- Fuzzy Sliding Mode Control of Vehicle Magnetorheological Semi-Active Air Suspension vol.11, pp.22, 2009, https://doi.org/10.3390/app112210925