71 / 2025-02-10 15:25:50
Structural Vibration Control of Floating Wind Turbine Based on Self-Powered Active Mass Damper
floating wind turbine,self-powered vibration control,economic model predictive control,self-powered active mass damper,PMSM electromagnetic damper
全文录用
Kaixin Cheng / Dalian University of Technology
Yuanbo Guo / Dalian University of Technology
Kaicheng Yang / Dalian University of Technology
Ze Li / Hebei University
Jinhui Xia / Southeast University
Qigang Liang / Dalian University of Technology
Luyu Li / Dalian University of Technology
Xiaohua Zhang / Dalian University of Technology
Vibration mitigation in floating offshore wind turbines (FOWTs) is critical for ensuring structural safety and operational efficiency. This paper proposes a novel self-powered active mass damper (SPAMD) system based on a permanent magnet synchronous motor (PMSM) for FOWT vibration control. The SPAMD integrates a passive tuned mass damper (TMD) with an electromagnetic energy-harvesting damper, enabling simultaneous vibration suppression and energy regeneration. An economic model predictive control (EMPC) based on a simplified barge-type offshore wind turbine model is presented to optimize the energy recovery of the electromagnetic damper. Therein, the bounded states of the error subsystem are selected as the constraints of the proposed EMPC strategy. The effectiveness of the proposed EMPC controller is verified through real-time simulations on a dSPACE platform.
重要日期
  • 会议日期

    06月05日

    2025

    06月08日

    2025

  • 04月30日 2025

    初稿截稿日期

主办单位
IEEE PELS
IEEE
承办单位
Southeast University
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