University of Taipei:Item 987654321/16904
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    Please use this identifier to cite or link to this item: http://utaipeir.lib.utaipei.edu.tw/dspace/handle/987654321/16904


    Title: Specific stability region analysis for uncertain fuzzy descriptor systems with multiple derivative matrices
    Authors: Huang, Chih-Peng;黃志鵬
    Contributors: 臺北市立大學資訊科學系
    Keywords: fuzzy control;fuzzy descriptor system;stability region;linear matrix inequality (LMI)
    Date: 2016
    Issue Date: 2019-02-14
    Abstract: This paper addresses the specific stability region for uncertain fuzzy descriptor systems with distinct derivative matrices in the rules. First, an equivalent poles’ location criterion for the nominal descriptor system is originally derived and expressed as one compact form of strict and complex linear matrix inequality (LMI). Then, the result can be extended to cope with the specific stability region for the uncertain fuzzy descriptor systems with integrating multiple derivative matrices. Moreover, since the presented criteria involve complex LMIs, we appropriately conduct a projection scheme, where current LMI tools cannot evaluate them. By deriving useful projection operators onto the formed convex sets, an analysing algorithm is consequently presented for numerical evaluation. Finally, three numerical examples, two nonlinear systems and a physical circuit system, are given to demonstrate the validity and the practicability of the proposed approach.
    Relation: International Journal of Systems Science,47(8),P.1917-1930
    Appears in Collections:[Department of Computer Science] Periodical Articles

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