Fully Analytical Dynamic Model of Permanent-Magnet Brushless DC Motor Considering Slot Effect

Permanent-magnet brushless DC motors (PMBLDCMs) are widely used in various industrial applications. This paper proposed a fully analytical dynamic model of PMBLDCMs based on the armature reaction and subsequent commutation phenomenon. First, it introduced the PMBLDCM prototype, including the stator currents, electromagnetic torque, and rotor position calculated via electromotive force balance equations, the Maxwell stress tensor method, and motion formulas. Then, it employed the subdomain method under load conditions to analyze magnetic flux densities in the airgaps and the stator slots. Finally, it established a field-circuit coupling finite-element model (FEM) to verify magnetic flux densities, back-EMF, torque and rotor-position predictions. A 1.5 kW PMBLDCM prototype was built with back-EMF and stator-phase currents validated through experiments. In addition, torque and rotor-position results are validated against FEM instead of physical experiments.

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Publication Details

Journal
Actuators
Published
2026-09-25
DOI
https://doi.org/10.3390/act15100507
Primary Topic
Electric Motor Design and Analysis
Type
article
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Fully Analytical Dynamic Model of Permanent-Magnet Brushless DC Motor Considering Slot Effect

Ping Jin, Xinyi He, Yangyi Zhang, Yu Han et al.
Actuators
Electric Motor Design and Analysis
article

Fully Analytical Dynamic Model of Permanent-Magnet Brushless DC Motor Considering Slot Effect

Ping Jin, Xinyi He, Yangyi Zhang, Yu Han, Tan Jun, Jin Peng
article en

Abstract

Permanent-magnet brushless DC motors (PMBLDCMs) are widely used in various industrial applications. This paper proposed a fully analytical dynamic model of PMBLDCMs based on the armature reaction and subsequent commutation phenomenon. First, it introduced the PMBLDCM prototype, including the stator currents, electromagnetic torque, and rotor position calculated via electromotive force balance equations, the Maxwell stress tensor method, and motion formulas. Then, it employed the subdomain method under load conditions to analyze magnetic flux densities in the airgaps and the stator slots. Finally, it established a field-circuit coupling finite-element model (FEM) to verify magnetic flux densities, back-EMF, torque and rotor-position predictions. A 1.5 kW PMBLDCM prototype was built with back-EMF and stator-phase currents validated through experiments. In addition, torque and rotor-position results are validated against FEM instead of physical experiments.

ActuatorsVol. 15(10)
Hohai University (CN), Chuzhou University (CN)
Affordable and clean energy
Openalex Percentile: Top 21%
Electric Motor Design and Analysis
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Fully Analytical Dynamic Model of Permanent-Magnet Brushless DC Motor Considering Slot Effect — Ping Jin, Xinyi He, et al. · Actuators (2026) | TGRS Research Map | TGRS