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    Please use this identifier to cite or link to this item: http://tkuir.lib.tku.edu.tw:8080/dspace/handle/987654321/46031

    Title: Power swing damping controller design using an iterative linear matrix inequality algorithm
    Authors: Shiau, Jaw-Kuen;Taranto, Glauco N.;Chow, Joe H.;Boukarim, George
    Contributors: 淡江大學航空太空工程學系
    Keywords: Algorithms;Control system synthesis;Damping;Electric control equipment;Electric power systems;Feedback;Iterative methods;Matrix algebra;Optimization;Linear matrix inequalities;Low order controller design;Power system stabilizers;Series capacitor damping controllers;Static var compensators;Decentralized control
    Date: 1999-05
    Issue Date: 2013-03-20 16:29:13 (UTC+8)
    Publisher: Piscataway: Institute of Electrical and Electronics Engineers
    Abstract: Discusses an iterative method for designing power swing damping controllers. The method solves directly for a low-order robust controller, and if convergence is achieved, results in the closed-loop system satisfying a frequency-domain bound. It is based on the optimization of dynamic systems with linear matrix inequalities as the design constraints. Controller constraints such as decentralization and positive realness can also be included in the design. The proposed method is used to design a power system stabilizer for a single-machine infinite-bus system and a decentralized two-channel series and shunt capacitor damping controller for a three-area system
    Relation: IEEE Transactions on Control Systems Technology 7(3), pp.371-381
    DOI: 10.1109/87.761057
    Appears in Collections:[Graduate Institute & Department of Aerospace Engineering] Journal Article

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