An Improved Two-Vector Model-Free Predictive Current Control Method for PMSM Drives
ID:105 View Protection:ATTENDEE Updated Time:2025-05-06 15:13:14 Hits:265 Oral

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Abstract
Abstract--- Model predictive current control (MPCC) with optimal duty cycle has been widely studied and applied in the field of permanent magnet synchronous motor (PMSM) drive due to its advantages of simplicity, fast dynamic response and good steady state performance. Recent research on two-vector MPCC (TV-MPCC) has shown that the pulse arrangement of placing a nonzero vector on both sides of a zero vector results in smaller current harmonics and lower switching frequency than the traditional pulse arrangement that places a zero vector on both sides of a nonzero vector. However, the state-of-the-art method still fails to obtain the optimal steady-state performance, because the freedom of vector combinations and vector duration optimization are not fully utilized. This paper proposes an improved two-vector model-free predictive current control (TV-MFPCC) method. An adaptive ultralocal model is adopted to achieve strong robustness. The proposed TV-MFPCC takes the combination of two nonzero vectors into account, thereby improving the steady-state performance at high speeds. It further optimizes the time allocation of the voltage vector placed on both sides, obtaining the minimal current total harmonic distortion (THD). Compared to the state-of-the-art TV-MFPCC method that involves placing a nonzero vector on both sides of a zero vector, the proposed TV-MFPCC not only produces slightly lower switching frequency, but also reduces the current THD significantly in the entire speed range, which can be more than 50% at high speeds.
Keywords
Permanent magnet synchronous motor(PMSM),predictive control,current control,vector duration optimization
Speaker
Mengxuan Tian
postgraduate North China Electric Power University

Submission Author
Mengxuan Tian North China Electric Power University
Yongchang Zhang North China Electric Power University;School of Electrical and Electronic Engineering
Yubin Wang North China Electric Power University
Xu Zhang North China Electric Power University
Shuhan Xi North China Electric Power University
Jose Rodriguez Universidad San Sebastian
Garcia Cristian Universidad de Talca
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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