Title :
Pole assignment control of nonminimum phase systems: a combined adaptive control-variable structure approach
Author :
Bartolini, G. ; Ferrara, A.
Author_Institution :
Dept. of Commun., Comput. & Syst. Sci., Genoa Univ., Italy
Abstract :
A combined approach based on both the theory of variable structure control systems and the theory of model reference adaptive control is presented. The resultant control scheme solves a pole assignment control problem in the presence of uncertain nonminimum phase systems and is characterized by a simple first-order fixed compensator placed in parallel to the plant (so that the parallel connection turns out to be a relative-degree-one system with a nonnecessarily Hurwitz numerator), by a set of tunable state variable filters, along with an all-pass filter which prevents any unstable pole-zero cancellation from occurring, as long as the plant numerator is non-Hurwitz. Indeed, the use of discontinuous control actions, together with the introduction of the all-pass filter, guarantees the convergence of the signal playing the role of output error to zero, while all the control signals turn out to be bounded, and the appointed control objective is attained
Keywords :
compensation; filtering and prediction theory; model reference adaptive control systems; poles and zeros; variable structure systems; all-pass filter; convergence; discontinuous control actions; first-order fixed compensator; model reference adaptive control; nonminimum phase systems; pole assignment control; tunable state variable filters; unstable pole-zero cancellation; variable structure control systems; Adaptive control; Adaptive systems; Communication system control; Control system synthesis; Control systems; Error correction; Filters; Poles and zeros; Programmable control; Variable structure systems;
Conference_Titel :
Systems Engineering, 1992., IEEE International Conference on
Conference_Location :
Kobe
Print_ISBN :
0-7803-0734-8
DOI :
10.1109/ICSYSE.1992.236944