• DocumentCode
    1124046
  • Title

    Robust Dichotomy Analysis and Synthesis With Application to an Extended Chua´s Circuit

  • Author

    Yang, Ying ; Duan, Zhisheng ; Huang, Lin

  • Author_Institution
    Peking Univ., Beijing
  • Volume
    54
  • Issue
    9
  • fYear
    2007
  • Firstpage
    2078
  • Lastpage
    2086
  • Abstract
    Dichotomy, or monostability, is one of the most important properties of nonlinear dynamic systems. For a dichotomous system, the solution of the system is either unbounded or convergent to a certain equilibrium, thus periodic or chaotic states cannot exist in the system. In this paper, a new methodology for the analysis of dichotomy of a class of nonlinear systems is proposed, and a linear matrix inequality (LMI)-based criterion is derived. The results are then extended to uncertain systems with real convex polytopic uncertainties in the linear part, and the LMI representation for robust dichotomy allows the use of parameter-dependent Lyapunov function. Based on the results, a dynamic output feedback controller guaranteeing robust dichotomy is designed, and the controller parameters are explicitly expressed by a set of feasible solutions of corresponding linear matrix inequalities. An extended Chua´s circuit with two nonlinear resistors is given at the end of the paper to demonstrate the validity and applicability of the proposed approach. It is shown that by investigating the convergence of the bounded oscillating solutions of the system, our results suggests a viable and effective way for chaos control in nonlinear circuits.
  • Keywords
    Chua´s circuit; feedback; linear matrix inequalities; nonlinear dynamical systems; nonlinear network analysis; nonlinear network synthesis; stability; uncertain systems; chaos control; convex polytopic uncertainties; dichotomous system; dynamic output feedback controller; extended Chua´s circuit; linear matrix inequality; monostability; nonlinear circuits; nonlinear dynamic systems; nonlinear resistors; parameter-dependent Lyapunov function; robust dichotomy analysis; uncertain systems; Chaos; Circuit synthesis; Linear feedback control systems; Linear matrix inequalities; Lyapunov method; Nonlinear dynamical systems; Nonlinear systems; Robustness; Uncertain systems; Uncertainty; Chaos control; dichotomy; linear matrix inequalities (LMIs); nonlinear systems; parameter-dependent Lyapunov function;
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems I: Regular Papers, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1549-8328
  • Type

    jour

  • DOI
    10.1109/TCSI.2007.904670
  • Filename
    4303311