A servo design method for MIMO Wiener systems with nonlinear uncertainty

  • Kim, Sang-Hoon (Graduate School of Engineering Science, Osaka University) ;
  • Kunimatsu, Sadaaki (Graduate School of Engineering Science, Osaka University) ;
  • Fujii, Takao (Graduate School of Engineering Science, Osaka University)
  • Published : 2005.06.02

Abstract

This paper presents theory for stability analysis and design of a servo system for a MIMO Wiener system with nonlinear uncertainty. The Wiener system consists of a linear time-invariant system(LTI) in cascade with a static nonlinear part ${\psi}$(y) at the output. We assume that the uncertain static nonlinear part is sector bounded and decoupled. In this research, we treat the static nonlinear part as multiplicative uncertainty by dividing the nonlinear part ${\psi}$(y) into ${\phi}$(y) := ${\psi}$(y)-y and y, and then we reduce this stabilizing problem to a Lur'e problem. As a result, we show that the servo system with no steady state error for step references can be constructed for the Wiener system.

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