DocumentCode :
2186703
Title :
Robust universal servomechanisms with improved transient performance
Author :
Seshagiri, Sridhar ; Khalil, Hassan K.
Author_Institution :
Dept. of Electr. & Comput. Eng., Michigan State Univ., East Lansing, MI, USA
Volume :
1
fYear :
2003
fDate :
4-6 June 2003
Firstpage :
891
Abstract :
We consider the design of a robust continuous sliding mode controller (CSMC) that achieves asymptotic tracking and disturbance rejection for a class of nonlinear systems. Previous work has shown how to do this by incorporating a linear servo-compensator in the sliding mode design, but the asymptotic tracking is usually achieved at the cost of poor transient performance (compared to ideal SMC). Extending previous ideas from the design of "conditional integrators" for the restricted regulation problem in the presence of constant disturbances, we design the servo-compensator as a conditional one that provides servo-compensation only inside the boundary layer; achieving asymptotic tracking, but with improved transient performance. We give both regional as well as semi-global results for error convergence, and show that the controller can be tuned to recover the performance of an ideal SMC.
Keywords :
boundary layers; control system synthesis; controllers; convergence; nonlinear systems; robust control; servomechanisms; tracking; variable structure systems; asymptotic tracking; boundary layer; conditional integrators design; disturbance rejection; error convergence; linear servocompensator; nonlinear systems; robust continuous sliding mode controller; sliding mode design; transient performance; universal servomechanisms; Control systems; Costs; Ear; Error correction; Nonlinear control systems; Nonlinear systems; Robust control; Robustness; Servomechanisms; Sliding mode control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference, 2003. Proceedings of the 2003
ISSN :
0743-1619
Print_ISBN :
0-7803-7896-2
Type :
conf
DOI :
10.1109/ACC.2003.1239136
Filename :
1239136
Link To Document :
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