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  1. National Taiwan Ocean University Research Hub
  2. 海運暨管理學院
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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/26784
Title: Fin Stabilizer-Based Finite-Time H<sub>??/sub> Interval Type-2 Fuzzy Synthesis for Ship Rolling Motion With Bouc-Wen Hysteresis Under Imperfect Premise Matching
Authors: Arumugam, Arunkumar
Chang, Wen-Jer 
Lee, Yi-Chen
Lin, Yann-Horng
Li, Li 
Aslam, Muhammad Shamrooz
Keywords: Radio broadcasting;Frequency modulation;Feedback;Filtering;Filters;Circuits;Low-pass filters;Output feedback;Feedback circuits;Circuits and systems;Bouc-Wen hysteresis behavior;finite-time bounded;imperfect premise matching;I
Issue Date: 2026
Publisher: IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Journal Volume: 34
Journal Issue: 7
Start page/Pages: 14
Source: IEEE TRANSACTIONS ON FUZZY SYSTEMS
Abstract: 
When a ship operates at sea, it undergoes noticeable motions caused by waves and winds, with rolling being the most pronounced. Nowadays, fin stabilizers remain the most widely adopted devices for roll stabilization. However, they often exhibit hysteresis due to variations in hydrodynamic forces. To better address the control problem of ship rolling motion under nonlinearities, uncertainties, and hysteresis, this article proposes an Interval Type-2 (IT2) fuzzy controller design method that incorporates a novel Bouc-Wen (B-W) hysteresis estimator within the Takagi-Sugeno fuzzy model (TSFM) framework. The main contribution of this research lies in developing a B-W hysteresis state estimator within the IT2 TSFM framework to accurately capture the nonlinear hysteresis behavior. An IT2 fuzzy controller corresponding to the IT2 TSFM is developed using the imperfect premise matching method to improve the flexibility of controller design in practical applications. By combining with finite-time control theory, the IT2 fuzzy controller guarantees finite-time boundedness (FTB) and achieves performance index under the finite-time H-infinity criterion. According to Lyapunov theory, a new set of sufficient conditions is formulated using LMIs to guarantee the FTB for the ship rolling system. Finally, the simulation results of the nonlinear ship rolling system using the fin stabilizers are presented to verify the performance of the proposed IT2 fuzzy control approach.
URI: http://scholars.ntou.edu.tw/handle/123456789/26784
ISSN: 1063-6706
DOI: 10.1109/TFUZZ.2026.3688270
Appears in Collections:輪機工程學系
電機工程學系

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