Title :
New design method for stable filtered inverse systems
Author :
Yamada, Kou ; Kinoshita, Wataru
Author_Institution :
Gunma Univ., Kiryu, Japan
Abstract :
Considers a design method of filtered inverse systems for time-invariant systems, which reproduce the input signal to the system approximately. The inverse system must be stable in practical applications. It is well known that the inverse system is unstable if the system has invariant zeros in the right half plane. Yamada and Watanabe (1996) presented a state space design method of stable filtered inverse systems for strictly proper systems with some right half plane invariant zeros. However, the series connected system with the system and filtered inverse system is not always a diagonal rational function. The purpose of the paper is to give a state space design method of stable filtered inverse systems such that the series connected system with the system and stable filtered inverse system is a diagonal rational function. We construct firstly, the filtered-inverse system by the usual method and factorize the filtered inverse systems to several subsystems. The stable filtered inverse system is obtained using an observer design for subsystems of the filtered inverse system.
Keywords :
control system synthesis; filtering theory; low-pass filters; matrix algebra; rational functions; stability; state-space methods; transfer functions; diagonal rational function; invariant zeros; series connected system; stable filtered inverse systems; state space design method; strictly proper systems; time-invariant systems; Design methodology; Feedback control; Frequency; Minimization methods; Nonlinear filters; Servomechanisms; Signal design; State-space methods;
Conference_Titel :
American Control Conference, 2002. Proceedings of the 2002
Print_ISBN :
0-7803-7298-0
DOI :
10.1109/ACC.2002.1025406