DocumentCode
1239247
Title
Robust PID control design for an electrostatic micromechanical actuator with structured uncertainty
Author
Vagia, M. ; Tzes, A.
Author_Institution
Dept. of Electr. & Comput. Eng., Patras Univ., Achaia
Volume
2
Issue
5
fYear
2008
fDate
5/1/2008 12:00:00 AM
Firstpage
365
Lastpage
373
Abstract
A robust proportional integral derivative (PID) controller coupled to a feedforward compensator is designed for set-point regulation manoeuvres of an electrostatic micromechanical system. The system is linearised at multiple operating points, and the feedforward compensator provides the nominal voltage. Perturbations around these points are handled from the PID controller, whose gains are tuned via the utilisation of a linear matrix inequality (LMI) approach, which guarantees robustness against the switching nature of the linearised system dynamics. The maximum microspring-stiffness parametric uncertainty that can be tolerated within this scheme, is computed through the use of the small gain theorem. Simulation studies are presented that proves the efficacy of the suggested scheme.
Keywords
control system synthesis; electrostatic actuators; feedforward; linear matrix inequalities; robust control; three-term control; uncertain systems; electrostatic micromechanical actuator; feedforward compensator; linear matrix inequality; linearised system dynamics; maximum microspring-stiffness parametric uncertainty; robust PID control design; robust proportional integral derivative controller; set-point regulation manoeuvres; small gain theorem; structured uncertainty;
fLanguage
English
Journal_Title
Control Theory & Applications, IET
Publisher
iet
ISSN
1751-8644
Type
jour
DOI
10.1049/iet-cta:20070284
Filename
4536587
Link To Document