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    Please use this identifier to cite or link to this item: https://nccur.lib.nccu.edu.tw/handle/140.119/76098


    Title: Decoupled-layer optimal stabilizer design
    Authors: Hwang, T.Y.;Chang, C.H.;Huang, Chih-Chieh;Lien, Yao-Nan;Huang, T.L.;Wang, C.T.;Sheu, J.S.
    連耀南
    Contributors: 資科系
    Keywords: Comparative analysis;Computer memories;Decoupled controller;Global control;Large system;Level schemes;Linear feedback controllers;Local information;Output variables;Physical meanings;Reduced order;Reduced order models;State variables;Subsystem level;Design;Optimization;Controllers
    Date: 2010-01
    Issue Date: 2015-06-29 17:21:30 (UTC+8)
    Abstract: The purpose of this paper is to address the design of decoupled-level large system controllers using an optimal reduced order model whose state variables are all output states. The reduced-order model retains their physical meaning and is used to design a decoupled-level linear feedback controller that takes into account the realities and constraints of the large systems. The decoupled-level control strategy is used and a global control signal is generated from the output variables to minimize the effect of interactions. As a result, the effectiveness of this controller is evaluated and considerable savings in computer memory are achieved. In conclusion, the controllers determined at the subsystem level depend only on local information operating to the particular machine. Example is given to illustrate the advantages of the proposed method. Responses of the system with decoupled-level scheme and optimal reduced order scheme are included for comparative analyses. It is recommended that the proposed method can be applied to supper large system.
    Relation: WSEAS Transactions on Information Science and Applications, 7(1), 36-45
    Data Type: article
    Appears in Collections:[Department of Computer Science ] Periodical Articles

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