Title :
An L∞ optimal performance approach to robust feedback control
Author :
Keenan, M.R. ; Kantor, J.C.
Author_Institution :
Department of Chemical Engineering, University of Notre Dame
Abstract :
This paper proposes a design technique to minimize a weighted L∞ performance measure over all disturbances in a given set. This disturbance set is also characterized by a weighted L∞ norm. The technique can accommodate hard constraints on regulated and manipulated variables. The main result is that each closed-loop mapping must lie in the `polar´ defined by the disturbance set. The model reference transformation parameter Q is subsequently computed as a finite impulse response filter. The resulting closed-loop system will reject persistent bounded disturbance inputs. A novel method of computation is also outlined which formulates the optimal design problem as a reasonably-sized linear program.
Keywords :
Adaptive control; Design engineering; Feedback control; Finite impulse response filter; Optimal control; Regulators; Robust control; Signal design; Signal mapping; Vectors;
Conference_Titel :
American Control Conference, 1989
Conference_Location :
Pittsburgh, PA, USA