Composite Model Predictive Speed Loop Control for PMSM Servo Systems
ID:34 View Protection:ATTENDEE Updated Time:2025-05-28 15:30:27 Hits:219 Oral

Start Time:2025-06-06 14:00(Asia/Shanghai)

Duration:15min

Session:O 1&4 Oral Sessions 1&4 » OS 1&4Oral session 1&4

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Abstract
This study presents a composite model predictive speed-loop controller for permanent magnet synchronous motor (PMSM) servo systems. To enhance the system's disturbance rejection capability and speed bandwidth, the proposed approach incorporates an extended state observer (ESO) and delay compensation within the speed loop. The ESO is designed to estimate the lumped disturbance torque and instantaneous speed. This estimated information, along with the delay characteristics of the current loop, is integrated into the predictive model. Finally, an optimal control law is derived through receding horizon optimization. Experimental results validate the effectiveness of the proposed controller, demonstrating significant improvements in dynamic response and bandwidth.
Keywords
Model predictive control, extended state observer, single-loop, system delays, PMSM.
Speaker
Kaifeng Yang
doctor Southeast University

Haifeng Li
Southeast University

Submission Author
Kaifeng Yang Southeast University
Haifeng Li Southeast University
Shihua Li Southeast University
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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