參考文獻 |
1. J. Ackermann, and V. Utkin, “Sliding mode control design based on Ackermann’s formula,” IEEE Trans. Automat. Control, Vol. 43, pp. 234-237, 1998.
2. S. G. Cao, N. W. Rees, and G. Feng, “Analysis and design for a class of complex control systems-Part I: Fuzzy modeling and identification,” Automatica, Vol. 33, pp.1017-1028, 1997.
3. Y.Y. Cao, and P.M. Frank, “Analysis and synthesis of Nonlinear Time-Delay systems via Fuzzy Control Approach,” IEEE Trans. Fuzzy Syst., Vol. 8, pp.200-211, 2000
4. Y.Y. Cao, and P.M. Frank, “Stability analysis and synthesis of nonlinear time-delay systems via linear Takagi-Sugeno fuzzy models,” Fuzzy Sets Syst., Vol. 124, pp.213-229, 2001.
5. J. L. Chang, and Y. P. Chen, “Sliding vector design based on the pole-assignment method,” Asian Journal of Control, Vol. 2, pp. 10-15, 2000.
6. W. Chang, J. B. Park, Y. H. Joo, and G. Chen, “Design of robust fuzzy-model-based controller with sliding mode control for SISO nonlinear systems,” Fuzzy Sets Syst., Vol. 125, pp.1-22, 2002.
7. C. L. Chen, and M. H. Chang, “Otimal design of fuzzy sliding mode control: A comparative study,” Fuzzy Sets Syst., Vol. 93, pp.37-48, 1998.
8. C. T. Chen, Linear system theory and design, Oxford University Press, New York, 1984.
9. J. Y. Chen, “Rule regulation of fuzzy sliding mode controller design: Direct adaptive approach,” Fuzzy Sets Syst., Vol. 120, pp.159-168, 2001.
10. C. C. Cheng, I. M. Liu, “Design of MIMO integral variable structure controllers,” Journal of Franklin Institute, Vol. 336, pp. 1119-1134, 1999.
11. T. L. Chern, Y. C. Wu, “Design of integral variable structure controller and application to electrohydraulic velocity servo systems,” IEE Proc., Control Theory Appl, Vol. 41, pp. 439-444, 1991.
12. T. L. Chern, Y. C. Wu, “Integral variable structure control approach for robot manipulators,” IEE Proc., Control Theory Appl, Vol. 139, pp. 161-166, 1992.
13. H. H. Choi, “A new method for variable structure control system design: a linear matrix inequality approach,” Automatica, Vol. 33, pp. 2089-2092, 1997.
14. H. H. Choi, “On the existence of linear sliding surfaces for a class of uncertain dynamic systems with mismatched uncertainties,” Automatica, Vol. 35, pp. 1707–1715, 1999.
15. H. H. Choi, “Variable structure control of dynamical systems with mismatched norm-bounded uncertainties: an LMI approach,” International Journal of Control, Vol. 74, pp. 1324-1334, 2001.
16. H. H. Choi, “An LMI-based switching surface design method for a class of mismatched uncertain systems,” IEEE Trans. Automat. Control, Vol. 48, pp. 1634–1638, 2003.
17. R. A. Decarlo, S. H. Zak, and G. P. Mathews, “Variable structure control of nonlinear multivariable system: a tutorial,” IEEE proceedings, Vol. 76, pp.212-232, 1988.
18. R. A. Decarlo, S. H. Zak, and S. Drakunov, Variable structure sliding mode controller design, In W. Levine (Ed.) The Control Handbook (Boca Raton: CRC Press Inc.), 1996.
19. R. A. Decarlo, S. Drakunov, and X. Li, “A unifying characterization of robust sliding mode control: a Lyapunov approach,” ASME Journal of Dynamic Systems, Measurement, and Control, Vol. 122, pp. 708-718, 2000.
20. C. M. Dorling, and A. S. I. Zinober, “Two approaches to hyperplane design in Multivariable variable structure control Systems,” International Journal of Control, Vol. 44, pp. 65-82, 1986.
21. C. M. Dorling, and A. S. I. Zinober, “Robust hyperplane dsign in multivariable variable structure control,” International Journal of Control, Vol. 48, pp. 2043-2053, 1988.
22. O. M. E. Elghezawi, A. S. I. Zinober, S. A. Billings, “Analysis and design of variable structure systems using a geometric approach,” International Journal of Control, Vol. 38, pp. 657-671, 1983.
23. C. H. Fang, F. R. Chang, “A new approach for calculating doubly coprime matrix descriptions,” IEEE Trans. Automat. Control, Vol. 37, pp. 138-141, 1992.
24. C. Fantuzzi and R. Rovatti, “On the approximation capabilities of the homogeneous Takagi-Sugeno model,” in Proc. 5th IEEE Int. Conf. Fuzzy Systems, New Orleans, LA, 1996, pp. 1067-1072.
25. G. Feng, S. G. Cao, N. W. Rees, and C. K. Chak, “Design of fuzzy control systems with guaranteed stability,” Fuzzy Sets Syst., Vol. 85, pp.1-10, 1997.
26. S. Glower and J. Munighan, “Designing fuzzy controllers from a variable structures standpoint,” IEEE Trans. Fuzzy Syst., vol. 5, pp. 138-144, 1997.
27. F. Gouaisbaut, M. Dambrine, and J. P. Richard, “Robust control of delay systems: a sliding mode control design via LMI,” System and Control Letters, Vol. 46, pp. 219-230, 2002.
28. Q. P. Ha, Q. H. Nguyen, D. C. Rye, and H. F. Durrant-Whyte, “Fuzzy sliding mode controllers with applications,” IEEE Trans. Ind. Electron., vol. 48, pp. 38-46, 2001.
29. Y. J. Huang, and H. K. Way, “Design of sliding surfaces in variable structure control via a direct pole assignment scheme,” International Journal of Systems Science, Vol. 32, pp. 963-969, 2001.
30. J. Y. Hung, W. Gao, and J. C. Hung, “Variable structure control: A survey,” IEEE Trans. Ind. Electron, Vol. 40, pp. 2-22, 1993.
31. G. C. Hwang, S. C. Lin, “ A stability approach to fuzzy control design for nonlinear systems,” Fuzzy Sets Syst., Vol. 48, pp.179-287, 1992.
32. Y. R. Hwang, and S.C. Lin, “Fuzzy smoothing algorithms for variable structure systems,” Fuzzy Sets Syst., Vol. 2, pp.277-284, 1994.
33. Y. Itkis, “Dynamic switching of type-I/type II structures in tracking servosystems,” IEEE Trans. Autom. Control, Vol. 28, pp. 531–534, 1983.
34. T. A. Johansson, R. Shorten, and R. Murray-Smith, “On the interpretation and identification of dynamic Takagi-Sugeno models,” IEEE Trans. Fuzzy Syst., vol. 8, pp. 297-313, 2000.
35. J. J. Lee, and Y. Xu, “A new method of switching surface design for multivariable variable structure systems,” IEEE Trans. Automat. Control, Vol. 39, pp. 414-419,1994.
36. C. Lin, Q.G. Wang, and T.H. Lee, “Stabilization of uncertain fuzzy time-delay systems via variable structure control approach,” IEEE Trans. Fuzzy Syst., vol. 13, pp. 787-798, 2005.
37. J. A. Meda-Campana, and B. Castillo-Toledo, “On the output regulation for TS fuzzy models using sliding modes,” in Proc. Amer. Control Conf., Portland, OR, pp.4062-4067, 2005.
38. C. N. Nett, C. A. Jacobson, M. J. Balas, “A connection between state-space and doubly coprime fractional representations,” IEEE Trans. Automat. Control, Vol. 29, pp. 831-832, 1984.
39. R. Palm, “Robust control by fuzzy sliding mode,” Automatica, vol. 30, pp. 1429-1437, 1994.
40. B.J. Rhee, and S.C. Won, “A new fuzzy Lyapunov function approach for a Takagi-Sugeno fuzzy control system design,” Fuzzy Sets Syst., Vol. 157, pp.1211-1228, 2006.
41. S. K. Spurgeon, “Choice of discontinuous control component for robust sliding mode performance,” International Journal of Control, Vol. 53, pp. 163-179, 1991.
42. J. P. Su, T. M. Chen, and C. C. Wang, “Adaptive fuzzy sliding mode control with GA-based reaching laws,” Fuzzy Sets Syst., Vol. 120, pp.145-158, 2001.
43. W. C. Su, S. V. Drakunov, Ü. Özgüner, “Constructing discontinuity surfaces for variable structure system: a Lyapunov approach,” Automatica, Vol. 32, pp. 925-928, 1996.
44. M. Sugeno, and G. T. Kang, “Structure identification of fuzzy model,” Fuzzy Sets Syst., vol. 28, pp. 15-33, 1988.
45. T. Takagi, and M. Sugeno, “Fuzzy identification of systems and its applications to modeling and control,” IEEE Trans. Syst., Man Cybern. Vol. 15, pp. 116-132, 1985.
46. K. Tanaka, T. Ikeda, and H.O. Wang, “Fuzzy regulators and fuzzy observers: relaxed stability conditions and LMI-based designs,” IEEE Trans. Fuzzy Syst., vol. 6, pp. 250-265, 1998.
47. K. Tanaka, T. Hori, and H.O. Wang, “A fuzzy Lyapunov approach to fuzzy control system design,” in Proc. American Control Conf., Arlington, VA, pp. 4790-4795, 2001.
48. K. Tanaka, T. Hori, and H.O. Wang, “New parallel distributed compensation using time derivative of membership functions: a fuzzy Lyapunov approach,” in Proc. 40th IEEE Conf. on Decision Control, Orland, FL, pp. 3492-3497, 2001.
49. K. Tanaka, T. Hori, and H.O. Wang, “A multiple Lyapunov function approach to stabilization of fuzzy control systems,” IEEE Trans. Fuzzy Syst., vol. 11, pp. 582-589, 2003.
50. E.Tian, and C. Peng, “Delay-dependent stability analysis and synthesis of uncertain T–S fuzzy systems with time-varying delay,” Fuzzy Sets Syst., Vol. 157, pp.544-559, 2006.
51. R. M. Tong, “ A control engineering review of fuzzy systems,” Automatica, vol. 13, pp. 559-568, 1977.
52. S.C. Tong, and H. H. Li, “Observer-based robust fuzzy control of nonlinear systems with parametric uncertainties,” Fuzzy Sets Syst., Vol. 131, pp.165-184, 2002.
53. V. I. Utkin, “Variable structure systems with sliding modes,” IEEE Trans. Automat. Control, Vol. 22, pp. 212-222, 1977.
54. V. I. Utkin, Sliding Modes and Their Application in Variable Structure Systems, Moscow: MIR, 1978.
55. V. I. Utkin, Sliding Modes in Control and Optimization, Berlin, Germany: Springer-Verlag, 1992.
56. H.O. Wang, K. Tanaka, and M.F. Griffin, “An approach to fuzzy control of nonlinear systems: Stability and design issues,” IEEE Trans. Fuzzy Syst., vol. 4, pp. 14-23, 1996.
57. J. D. Wang, Y. T. Juang, “A new approach for Computing the state feedback gains of multivariable systems,” IEEE Trans. Automat. Control, Vol. 40, pp. 1823-1826, 1995.
58. J. D. Wang, T. L. Lee, Y. T. Juang, “New methods to design an integral variable structure controller,” IEEE Trans. Automat. Control, Vol. 41, pp. 140-143, 1996.
59. L. X. Wang, “Stable adaptive fuzzy control of nonlinear systems,” IEEE Trans. Fuzzy Syst., vol. 1, pp. 146-155, 1993.
60. W. A. Wolovich, “Static Decoupling,” IEEE Trans. Automat. Control, Vol. 18, pp. 536-537, 1973.
61. Y. Xia and Y. Jia, “Robust sliding-mode control of uncertain time delay systems: An LMI approach,” IEEE Trans. Autom. Control, Vol. 48, pp. 1086–1092, 2003.
62. Z. Yi and P.A. Heng, “Stability of fuzzy control systems with bounded uncertain delays,” IEEE Trans. Fuzzy Syst., vol. 10, pp. 92-97, 2002.
63. H. Ying, “General SISO Takagi-Sugeno fuzzy systems with linear rule consequent are universal approximators,” IEEE Trans. Fuzzy Syst., vol. 6, pp. 582-587, 1998.
64. K. D. Young, and Özgüner, “Frequency shaping compensator design for sliding mode,” International Journal of Control, Vol. 57, pp. 1005-1019, 1993.
65. X. Yu, Z. Man, and B. Wu, “Design of fuzzy sliding-mode control systems,” Fuzzy Sets Syst., Vol. 95, pp.295-306, 1998.
66. L. A. Zadeh, “Fuzzy sets,” Inform. Control, vol. 8, pp. 338-353, 1965.
67. L. A. Zadeh, “Fuzzy algorithm,” Inform. Control, vol. 12, pp.94-102, 1968.
68. L. A. Zadeh, “Similarity relations and fuzzy orderings,” Inform. Sci, vol. 3, pp.177-200, 1971.
69. L. A. Zadeh, “Outline of a new approach to the analysis of complex systems and decision process,” IEEE Trans. Syst., Man, Cybern., vol. 3, pp. 28-44, 1973.
70. L. A. Zadeh, “The concept of a linguistic variable and its application to approximate reasoning: I, II, III,” Inform. Sci, vol. 8, pp.199-251, 1975.
71. K. Zeng, N. Y. Zhang, and W. L. Xu, “A comparative study on sufficient conditions for Takagi-Sugeno fuzzy systems as universal approximators,” IEEE Trans. Fuzzy Syst., vol. 8, pp. 773-780, 2000.
72. F. Zheng, Q. G. Wang, and T. H. Lee, “Output tracking control of MIMO fuzzy nonlinear systems using variable structure control approach,” IEEE Trans. Fuzzy Syst., vol. 10, pp. 686-697, 2002.
73. A. S. Zinober, Variable Structure and Lyapunov Control, Berlin, Germany: Spring-Verlag, 1994. |