Title :
Robust controller design for lightly damped systems with feedback delay
Author :
Hung, Donald L. ; Phillips, Stephen M.
Author_Institution :
Dept. of Electr. Eng., Gannon Univ., Erie, PA, USA
Abstract :
A controller design method based on convex programming is used for lightly damped systems with feedback delay. The designed controllers are robust with respect to time delays in the feedback action, which is often crucial to the stability of lightly damped systems. Exogenous disturbances and unmodeled dynamics are taken into account. Since the convex program is a global optimal technique, once a controller is found, it is optimal in the sense that it meets the design specifications. On the other hand, if no solution is found, then there exists no linear, time-invariant controller which can satisfy the design specifications. Simulation results show that the designed controller can effectively stabilize the lightly damped system and significantly improve its performance.<>
Keywords :
control system synthesis; convex programming; delays; feedback; optimal control; stability; convex programming; exogenous disturbances; feedback delay; global optimal technique; lightly damped systems; robust controller design; stability; unmodeled dynamics; Delay effects; Feedback; Optimal control; Stability;
Conference_Titel :
Systems Engineering, 1991., IEEE International Conference on
Conference_Location :
Dayton, OH, USA
Print_ISBN :
0-7803-0173-0
DOI :
10.1109/ICSYSE.1991.161084