Title :
Spectral Radius Design for Robust Multivariable Control
Author :
Kantor, Jeffrey C.
Author_Institution :
Department of Chemical Engineering, University of Notre Dame, Notre Dame, IN 46556
Abstract :
A sufficient condition for robust stability and disturbance rejection in multivariable control systems is presented. The condition is a bound on the spectral radius of a weighted set of closed loop transfer function matrices. Frequency dependent weighting matrices are determined from structured bounds on plant uncertainties and performance specifications. For certain clases of robust control problems, including nonminimum phase systems, the spectral radius has a particularly simple form that leads directly to graphical methods for control synthesis. Though the bounds are conservative, the technique does lead to simple graphical interpretations. This is illustrated for systems subject to additve plant perurbations and with performance constraints on both the control input and output error.
Keywords :
Chemical engineering; Control system synthesis; Control systems; Open loop systems; Poles and zeros; Robust control; Robust stability; Sufficient conditions; Transfer functions; Uncertainty;
Conference_Titel :
American Control Conference, 1986
Conference_Location :
Seattle, WA, USA