ANSYS-Based Broken Magnet, Demagnetization and Short Circuit Fault Evaluation for a BLDC Motor Designed for Light Electric Vehicle
Abstract
With the growing adoption of light electric vehicles (LEVs), it is becoming increasingly important to optimize their propulsion systems. Brushless DC (BLDC) motors are widely utilized for their high efficiency, precise control, and strong performance. Nevertheless, their reliability faces challenges from various operational failures that can greatly affect the functionality of the vehicle. This study employs Finite Element Method (FEM) analysis to investigate and quantify the effects of specific faults in BLDC motors, with a focus on magnet and stator insulation issues. Two primary types of magnet faults—broken magnets and demagnetization—are explored. Our findings indicate that the severity of these faults correlates directly with adverse effects on motor performance, including changes in current levels, torque, and magnetic flux density. A simulated reduction in magnet coercivity by 30% showcases critical consequences such as increased current draw and failure to generate net torque, highlighting potential performance degradation under high-temperature conditions or other stressors. Additionally, the study examines the impacts of unbalanced single-phase short circuits, which increase harmonic content and torque oscillations, further degrading motor performance. By demonstrating the significant influence of these faults through detailed FEM analysis, this research underlines the necessity for robust motor design and proactive maintenance to enhance the reliability and efficiency of LEVs. This work contributes valuable insights into the fault dynamics of BLDC motors, providing a valuable reference for engineers and researchers in the field of electric vehicle propulsion systems.
Keywords
Thanks
The authors would like to thank BINGEZ Automotive Ind. Ltd. Co., for generously sharing their BLDC design parameters and permission to publish it. A preliminary version of this study was presented at ELECO 2023, which was held in Bursa, Turkey. The authors acknowledge the feedback and insights received during the conference, which have significantly contributed to the refinement and expansion of this research.
References
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Details
Primary Language
English
Subjects
Electrical Machines and Drives
Journal Section
Research Article
Publication Date
October 31, 2024
Submission Date
July 30, 2024
Acceptance Date
September 17, 2024
Published in Issue
Year 2024 Volume: 4 Number: 3
APA
Abacı, M., & Bayram Kara, D. (2024). ANSYS-Based Broken Magnet, Demagnetization and Short Circuit Fault Evaluation for a BLDC Motor Designed for Light Electric Vehicle. Turkish Journal of Electrical Power and Energy Systems, 4(3), 118-126. https://doi.org/10.5152/tepes.2024.24020
AMA
1.Abacı M, Bayram Kara D. ANSYS-Based Broken Magnet, Demagnetization and Short Circuit Fault Evaluation for a BLDC Motor Designed for Light Electric Vehicle. TEPES. 2024;4(3):118-126. doi:10.5152/tepes.2024.24020
Chicago
Abacı, Mahmut, and Duygu Bayram Kara. 2024. “ANSYS-Based Broken Magnet, Demagnetization and Short Circuit Fault Evaluation for a BLDC Motor Designed for Light Electric Vehicle”. Turkish Journal of Electrical Power and Energy Systems 4 (3): 118-26. https://doi.org/10.5152/tepes.2024.24020.
EndNote
Abacı M, Bayram Kara D (October 1, 2024) ANSYS-Based Broken Magnet, Demagnetization and Short Circuit Fault Evaluation for a BLDC Motor Designed for Light Electric Vehicle. Turkish Journal of Electrical Power and Energy Systems 4 3 118–126.
IEEE
[1]M. Abacı and D. Bayram Kara, “ANSYS-Based Broken Magnet, Demagnetization and Short Circuit Fault Evaluation for a BLDC Motor Designed for Light Electric Vehicle”, TEPES, vol. 4, no. 3, pp. 118–126, Oct. 2024, doi: 10.5152/tepes.2024.24020.
ISNAD
Abacı, Mahmut - Bayram Kara, Duygu. “ANSYS-Based Broken Magnet, Demagnetization and Short Circuit Fault Evaluation for a BLDC Motor Designed for Light Electric Vehicle”. Turkish Journal of Electrical Power and Energy Systems 4/3 (October 1, 2024): 118-126. https://doi.org/10.5152/tepes.2024.24020.
JAMA
1.Abacı M, Bayram Kara D. ANSYS-Based Broken Magnet, Demagnetization and Short Circuit Fault Evaluation for a BLDC Motor Designed for Light Electric Vehicle. TEPES. 2024;4:118–126.
MLA
Abacı, Mahmut, and Duygu Bayram Kara. “ANSYS-Based Broken Magnet, Demagnetization and Short Circuit Fault Evaluation for a BLDC Motor Designed for Light Electric Vehicle”. Turkish Journal of Electrical Power and Energy Systems, vol. 4, no. 3, Oct. 2024, pp. 118-26, doi:10.5152/tepes.2024.24020.
Vancouver
1.Mahmut Abacı, Duygu Bayram Kara. ANSYS-Based Broken Magnet, Demagnetization and Short Circuit Fault Evaluation for a BLDC Motor Designed for Light Electric Vehicle. TEPES. 2024 Oct. 1;4(3):118-26. doi:10.5152/tepes.2024.24020