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@article{IJAMCS_2010_20_4_a1, author = {Tong, S. and Liu, C. and Li, Y.}, title = {Robust adaptive fuzzy filters output feedback control of strict-feedback nonlinear systems}, journal = {International Journal of Applied Mathematics and Computer Science}, pages = {637--653}, publisher = {mathdoc}, volume = {20}, number = {4}, year = {2010}, language = {en}, url = {http://geodesic.mathdoc.fr/item/IJAMCS_2010_20_4_a1/} }
TY - JOUR AU - Tong, S. AU - Liu, C. AU - Li, Y. TI - Robust adaptive fuzzy filters output feedback control of strict-feedback nonlinear systems JO - International Journal of Applied Mathematics and Computer Science PY - 2010 SP - 637 EP - 653 VL - 20 IS - 4 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/IJAMCS_2010_20_4_a1/ LA - en ID - IJAMCS_2010_20_4_a1 ER -
%0 Journal Article %A Tong, S. %A Liu, C. %A Li, Y. %T Robust adaptive fuzzy filters output feedback control of strict-feedback nonlinear systems %J International Journal of Applied Mathematics and Computer Science %D 2010 %P 637-653 %V 20 %N 4 %I mathdoc %U http://geodesic.mathdoc.fr/item/IJAMCS_2010_20_4_a1/ %G en %F IJAMCS_2010_20_4_a1
Tong, S.; Liu, C.; Li, Y. Robust adaptive fuzzy filters output feedback control of strict-feedback nonlinear systems. International Journal of Applied Mathematics and Computer Science, Tome 20 (2010) no. 4, pp. 637-653. http://geodesic.mathdoc.fr/item/IJAMCS_2010_20_4_a1/
[1] Boukezzoula, R., Galichet S.and Foulloy L. (2007). Fuzzy feedback linearizing controller and its equivalence with the fuzzy nonlinear internal model control structure, International Journal of Applied Mathematics and Computer Science 17(2): 233-248, DOI: 10.2478/v10006-007-0021-4.
[2] Chen, B. and Liu, X.P. (2005). Fuzzy approximate disturbance decoupling of MIMO nonlinear systems by backstepping and application to chemical processes, IEEE Transactions on Fuzzy Systems 13(6): 832-847.
[3] Chen, B.and Liu, X.P. (2007). Fuzzy approximate disturbance decoupling of MIMO nonlinear systems by backstepping approach, Fuzzy Sets and Systems 158(10): 1097-1125.
[4] Chen, B.S., Lee C.H. and Chang, Y.C. (1996). H∞ tracking design of uncertain nonlinear SISO systems: Adaptive fuzzy approach, IEEE Transactions on Fuzzy Systems 4(1): 32-43.
[5] Coddington, E.A. (1989). An Introduction to Ordinary Differential Equations, Prentice-Hall, Englewood Cliffs, NJ.
[6] Denai, M.A. and Attia S.A. (2002). Fuzzy and neural control of an induction motor, International Journal of Applied Mathematics and Computer Science 12(2): 221-233.
[7] Jiang, Z.P., Marels, I.M.Y. and Wang, Y (1996). A Lyapunov formulation of the nonlinear small-gain theorem for interconnected ISS systems, Automatica 32(8): 1211-1215.
[8] Jiang, Z.P. and Praly L. (1998). Design of robust adaptive controllers for nonlinear systems with dynamic uncertainties, Automatica 34(7): 825-840.
[9] Jiang, Z.P. (1999). A combined backstepping and small-gain approach to adaptive output feedback control, Automatica 35(6): 1131-1139.
[10] Kanellakopopoulos, I., Kokotovic, P.V. and Morse, A.S. (1991). Systematic design of adaptive controllers for feedback linearizable systems, IEEE Transactions on Automatic Control 36(11): 1241-1253.
[11] Kristic, M., Kanellakopoulos, I. and Kokotovic, P.V. (1992). Adaptive nonlinear control without over parametrization, System Control Letters 19(3): 177-185.
[12] Kristic, M., Kanellakopoulos, I.and Kokotovic, P.V. (1995). Nonlinear and Adaptive Control Design,Wiley, New York, NY.
[13] Qi, R.Y. and Brdys M.A.(2009). Indirect adaptive controller based on a self-structuring fuzzy system for nonlinear modeling and control, International Journal of Applied Mathematics and Computer Science 19(4): 619-630, DOI: 10.2478/v10006-009-0049-8.
[14] Qian, C.J. and Lin W. (2002). Output feedback control of a class of nonlinear systems: A non-separation principle paradigm, IEEE Transactions on Automatic Control 47(10): 1710-1715.
[15] Tong, S.C., He, X.L. and Li, Y.M. (2010a). Direct adaptive fuzzy backstepping robust control for single input single output uncertain nonlinear systems with small-gain approach, Information Sciences 180(9): 1738-1758.
[16] Tong, S.C., He, X.L. and Li, Y.M. (2010b). Adaptive fuzzy backstepping robust control for uncertain nonlinear systems based on small-gain approach, Fuzzy Sets and Systems 161(6): 771-796.
[17] Wang, L.X. (1994). Adaptive Fuzzy Systems and Control: Design and Stability Analysis, Prentice-Hall, Englewood Cliffs, NJ.
[18] Wang, M., Chen, B., Liu, X.P. and Shi, P. (2007). Adaptive fuzzy tracking control for a class of perturbed strictfeedback nonlinear time-delay systems, Fuzzy Sets and Systems 159(8): 949-967.
[19] Yang, Y.S. and Zhou, C.J.(2005). Robust adaptive fuzzy tracking control for a class of perturbed strict-feedback nonlinear systems via small-gain approach, Information Sciences 170(2-4): 211-234.
[20] Ye, X. D. (2001). Adaptive nonlinear output-feedback control with unknown high-frequency gain sign, IEEE Transactions on Automatic Control 51(3): 504-511.
[21] Zou, A.M. and Hou Z.G. (2008). Adaptive control of a class of nonlinear pure-feedback systems using fuzzy backstepping approach, IEEE Transactions on Fuzzy Systems 16(4): 886-867.