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T-S Fuzzy Model Based H(subscript ∞) Finite-Time Synchronization Design forChaotic Systems

並列摘要


This study investigates H(subscript ∞) finite-time synchronization (HFTS) problems for a general class of chaotic systems with external disturbances. The HFTS includes two control objectives; one is the finite-time synchronization and the other is the H(subscript ∞) minimization. Here, the finite-time synchronization means the finite-time stabilization of the error system between the master and slave chaotic systems, and the H(subscript ∞) minimization denotes that the rate between the error system's output and external disturbance is constrained and minimized. Takagi-Sugeno (T-S) fuzzy models are utilized to represent the master and slave chaotic systems. The synthesized controller called H(subscript ∞) finite-time synchronizing controller (HFSC) is composed of three sub-controllers, namely, one linear feedback control and two fuzzy parallel distributed compensation (PDC) controls. Finally, the controller synthesis procedure is summarized and simulation results are provided to demonstrate the validity and effectiveness of the proposed controllers.

被引用紀錄


Liu, C. H. (2016). 非線性系統之強健積分型T-S模糊輸出調節器設計 [doctoral dissertation, Chung Yuan Christian University]. Airiti Library. https://doi.org/10.6840/cycu201600885
Hong, C. W. (2013). 積分型T-S模糊控制設計應用於非線性切換式電源轉換器 [doctoral dissertation, Chung Yuan Christian University]. Airiti Library. https://doi.org/10.6840/cycu201301017
呂政翰(2015)。廣義羅倫斯混沌系統之保證指數同步的線性回授控制器設計及其應用〔碩士論文,義守大學〕。華藝線上圖書館。https://doi.org/10.6343/ISU.2015.00166

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