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논문검색

Dynamic State-Derivative Feedback Controller for Uncertain Equilibrium Point Stabilization

초록

영어

We consider a local stabilization problem of an uncertain equilibrium point existed in a nonlinear continuous-time system by a state-derivative feedback controller. In previous researches, it is investigated that the uncertainty of the equilibrium point results in nonzero steady-state control input so that a different equilibrium point is stabilized. Then, a feedback controllers with steady-state blocking zeros eliminate the dependence on the steady-state. In this paper, we focus on the class of state-derivative feedback control, and develop a design method for a dynamic state-derivative feedback controller with steady-state blocking zeros. The proposed controller can reject the dependence on the uncertainty of equilibrium points. Moreover, we illustrate the effectiveness of the proposed control method by the numerical example which is the stabilization problem of the uncertain equilibrium point. In addition, we show that the poles of the closed-loop system with the proposed dynamic controller can be assigned at the desired locations.

목차

Abstract
 1. Introduction
 2. Problem Statement
 3. Dynamic State-Derivative Feedback Controller
 4. Numerical Example
 5. Conclusions
 References

저자정보

  • Takashi Takimoto Department of Creative Engineering, National Institute of Technology, Kitakyushu College, Japan
  • Takashi Shigekuni Department of Creative Engineering, National Institute of Technology, Kitakyushu College, Japan

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