Indirect model predictive control for asymmetrical six-phase drives based on disturbance observer
ID:56 View Protection:ATTENDEE Updated Time:2025-05-06 14:55:29 Hits:188 Oral

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Abstract
To enhance the transient response of asymmetrical six-phase drives and mitigate model inaccuracies, this paper presents an indirect model predictive control method leveraging a disturbance observer. Specifically, a Kalman filter-based disturbance observer is utilized to estimate system state errors arising from parameter mismatches and unmodeled dynamics. Subsequently, a high-bandwidth indirect model predictive control strategy is developed to compute the unconstrained modulating voltage. Building on this, an active-set method-based quadratic programming solver is employed to determine the optimal constrained modulating voltage. Finally, the proposed approach is experimentally validated and compared with the field-oriented control method incorporating the proportional-integral controllers on an asymmetrical six-phase permanent magnet synchronous motor.
 
Keywords
model predictive control,Dual three-phase Permanent magnet synchronous motor,disturbance observer,vector space decomposition
Speaker
Qianwen Duan
Research Assistant Institute of Optics And Electronics, Chinese Academy of Sciences

Submission Author
Qianwen Duan Institute of Optics And Electronics, Chinese Academy of Sciences
Wanping Yu Institute of Optics And Electronics, Chinese Academy of Sciences
Jincong Zhu Institute of Optics and Electronics, Chinese Academy of Sciences
Yao Mao Institute of Optics And Electronics, Chinese Academy of Sciences
Qiliang Bao Institute of Optics And Electronics, Chinese Academy of Sciences
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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

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