Improved Deadbeat Predictive Current Control for OW-PMSM Based on Average Harmonic Back-EMF Model and Phase Compensation Resonance Observer
ID:50 View Protection:ATTENDEE Updated Time:2025-05-06 14:53:46 Hits:211 Oral

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Abstract
Abstract — The open-winding permanent magnet synchronous motor (OW-PMSM) features a zero-sequence loop (ZSL), in which the third-order harmonic back electromotive force (Back-EMF) from the permanent magnet and the inverter nonlinearity both contribute to the generation of zero-sequence current (ZSC). Since the ZSC primarily comprises third-order harmonic current, its control becomes more complex. Furthermore, the system delay adversely affects the deadbeat predictive current control (DPCC) of the OW-PMSM, with these effects becoming more pronounced as the speed increases. To mitigate the effects of system delay, this paper proposes an average harmonic back-EMF model for the OW-PMSM and employs a phase-compensated resonant observer to improve system robustness. Finally, the effectiveness of the proposed DPCC method is verified experimentally.
Keywords
Deadbeat Predictive Current Control,open-winding permanent magnet synchronous motor,harmonic back electromotive force,system delay,phase-compensated resonant observer,zero-sequence current
Speaker
Shengzhe Lin
Mr Southeast University

Submission Author
Shengzhe Lin Southeast University
Wei Wang Southeast University
Jie Fu The Beijing Institute of Precision Mechatronics and Controls
Peijuan Cui The Beijing Institute of Precision Mechatronics and Controls
Zaiping Zheng The Beijing Institute of Precision Mechatronics and Controls
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Important Date
  • Conference Date

    Jun 05

    2025

    to

    Jun 01

    2026

  • May 30 2025

    Draft paper submission deadline

  • Jun 08 2025

    Registration deadline

Sponsored By
China Southeast University
IEEE Power Electronics Society
Jiangsu Association of Automation
Nanjing Section IE Chapter
Organized By
Southeast University