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    Please use this identifier to cite or link to this item: http://ir.lib.ncu.edu.tw/handle/987654321/29482


    Title: STABILIZATION, ESTIMATION AND ROBUSTNESS FOR LARGE-SCALE TIME-DELAY SYSTEMS
    Authors: WANG,WJ;KAO,CC;CHEN,CS
    Contributors: 電機工程研究所
    Keywords: INTERCONNECTED SYSTEMS;DECENTRALIZED OBSERVATION;LINEAR-SYSTEMS;STABILITY;FEEDBACK;STATE
    Date: 1991
    Issue Date: 2010-06-29 20:25:53 (UTC+8)
    Publisher: 中央大學
    Abstract: In this paper, we consider the problems of stabilization, estimation and robustness for a large scale system. The large scale system is composed of several low order time-delay perturbed subsystems. First, by the use of the Lyapunov stability theorem, two inequalities are derived, under which the controller gain and observer gain matrices in each nominal subsystem can be determined, such that not only the states of each nominal subsystem are asymptotically estimated, but also the whole nominal large scale system is asymptotically stable. Second, the nonlinear perturbation of each subsystem is considered, and the allowable perturbation bound is obtained, such that the whole closed-loop system remains robustly stable. This paper has two main features: 1. we need not solve any Lyapunov equation or Riccati equation in the results. 2. these results are also applicable to the system without time-delay and/or with linear perturbations.
    Relation: CONTROL-THEORY AND ADVANCED TECHNOLOGY
    Appears in Collections:[Graduate Institute of Electrical Engineering] journal & Dissertation

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