Open Access
Issue
JNWPU
Volume 44, Number 1, February 2026
Page(s) 70 - 80
DOI https://doi.org/10.1051/jnwpu/20264410070
Published online 27 April 2026
  1. Petrov I, Pyrhonen J. Performance of low-cost permanent magnet material in PM synchronous machines[J]. IEEE Trans on Industrial Electron, 2013, 60(6): 2131–2138 [Article] [Google Scholar]
  2. Buja G, Bertoluzzo M, Keshri R K. Torque ripple-free operation of PM BLDC drives with petal-wave current supply[J]. IEEE Trans on Industrial Electron, 2015, 62(7): 4034–4043 [Article] [Google Scholar]
  3. Sarlioglu B, Morris C T. More electric aircraft: review, challenges, and opportunities for commercial transport aircraft[J]. IEEE Trans on Transportation Electrification, 2015, 1(1): 54–64 [Article] [Google Scholar]
  4. Nerat M, Vranĉic D. A novel fast-filtering method for rotational speed of the BLDC motor drive applied to valve actuator[J]. IEEE/ASME Trans on Mechatronics, 2016, 21(3): 1479–1486 [Article] [Google Scholar]
  5. Hladík P, Andoga R, Fózó L, et al. Efficiency of BLDC fuel pump controllers of small turbojet engines[C]//2020 New Trends in Aviation Development(NTAD), Starý Smokovec, Slovakia, 2020: 93–98. [Google Scholar]
  6. Fang Chun. Temperature rise & loss suppression of brushless DC motor for helicopter rescuehoist at multi-elevations[D]. Xi'an: Northwestern Polytechnical University, 2018. (in Chinese) [Google Scholar]
  7. Li Yazhong. Research on parameter identification of permanent magnet brushless DC wheel hub motor of electric vehicle[D]. Changsha: Changsha University of Science & Technology, 2015. (in Chinese) [Google Scholar]
  8. Xia K, Ye Y, Ni J, et al. Model predictive control method of torque ripple reduction for BLDC motor[J]. IEEE Trans on Magnetics, 2020, 56(1): 1–6 [Google Scholar]
  9. Lee Y. A new method to minimize overall torque ripple in the presence of phase current shift error for three-phase BLDC motor drive[J]. Canadian Journal of Electrical and Computer Engineering, 2019, 42(4): 225–231 [Article] [Google Scholar]
  10. Wang Q, Wang G, Zhao N, et al. An impedance model-based multiparameter identification method of PMSM for both offline and online conditions[J]. IEEE Trans on Power Electronics, 2021, 36(1): 727–738 [Article] [Google Scholar]
  11. Liu Shaobo, Wang Qiwei, Wang Gaolin, et al. Virtual-axis injection based online parameter identification of PMSM considering cross coupling and saturation effects[J]. IEEE Trans on Power Electronics, 2023, 38(5): 5791–5802 [Article] [Google Scholar]
  12. Xie C, Zhang S, Li X, et al. Parameter identification for spmsm with deadbeat predictive current control using online PSO[J]. IEEE Trans on Transportation Electrification, 2024, 10(2): 4055–4064 [Article] [Google Scholar]
  13. Song Jianguo, Zhang Zhenlu, Li Xiangcheng. Multi-parameter identification of permanent magnet synchronous motor based on improved least square method[J]. Electric Machines & Control Application, 2021, 48(3): 16–21 (in Chinese) [Google Scholar]
  14. Qi Xiang, Zhang Xinguang, Deng Yinzhe. Online parameter identification of remote operated vehicle motion using generalized least squares method[J]. Ship Engineering, 2021, 43(5): 111–113 (in Chinese) [Google Scholar]
  15. Chen Weimin. Research on the online parameter estimation of permanent magnet synchronous machine[D]. Beijing: Beijing Jiaotong University, 2020. (in Chinese) [Google Scholar]
  16. Shi Tingna, Zhang Qian, Xiao Youwen, et al. Online parameter identification and sliding mode observation of back-electromotive force of brushless direct current motors[J]. Acta Armamentarii, 2013, 34(6): 739–747 (in Chinese) [Google Scholar]
  17. Guo Honghao, Zhou Bo, Zuo Guangjie, et al. Adaptive sliding-mode observer for back electromotive force estimation of brushless DC motor[J]. Proceedings of the CSEE, 2011, 31(21): 142–149 (in Chinese) [Google Scholar]
  18. Wang Chongwu, He Longfei, Li Hong. On-line parameter identification of torpedo propulsion brushless DC motors[J]. Journal of Northwestern Polytechnical University, 2013, 31(3): 373–377 [Article] (in Chinese) [Google Scholar]
  19. Li Boqun. Research on parameter identification and torque ripple suppression technologies for brushless DC motor used in electric tricycle[D]. Hangzhou: Zhejiang University, 2022. (in Chinese) [Google Scholar]
  20. Lou Tianhao. Research on control technology of automotive brushless DC motor based on improved particle swarm algorithm parameter identification[D]. Hangzhou: Zhejiang University, 2022. (in Chinese) [Google Scholar]
  21. Pakdeeto J, Wansungnoen S, Areerak K. Parameter Identification and optimal speed controller design for BLDC motor using the genetic algorithm[C]//2024 2nd International Conference on Mechatronics, Control and Robotics, Jeju, Republic of Korea, 2024: 73–77. [Google Scholar]
  22. Chaicharoenaudomrung K, Wansungnoen S, Pakdeeto J, et al. Parameter identification of BLDC motor by using adaptive tabu search[C]//2021 International Conference on Power, Energy and Innovations, Nakhon Ratchasima, Thailand, 2021: 5–8. [Google Scholar]
  23. Jasper D V, David C, Stiin D, et al. Online impedance estimation for sensorless BLDC motor motion applications[C]//2021 International Conference on Electrical, Computer, Communications and Mechatronics Engineering, Mauritius, 2021: 1–6. [Google Scholar]
  24. Mo Y, Luo X, Ma C, et al. Improved PSO parameter identification-based composite STSM controller for BLDC drives[C]//2024 4th International Conference on Artificial Intelligence, Robotics, and Communication, Xiamen, China, 2024: 460–468. [Google Scholar]
  25. Meng G, Xiong H, Li H. Commutation torque ripple reduction in BLDC motor using PWM-ON-PWM mode[C]//2009 International Conference on Electrical Machines and Systems, Tokyo, Japan, 2009: 1–6. [Google Scholar]
  26. Krishnan G, Ajmal K T. A neoteric method based on PWM ON PWM scheme with buck converter for torque ripple minimization in BLDC drive[C]//2014 Annual International Conference on Emerging Research Areas: Magnetics, Machines and Drives, Kottayam, India, 2014: 1–6. [Google Scholar]
  27. Xia K, Ye Y, Ni J, et al. Model predictive control method of torque ripple reduction for BLDC motor[J]. IEEE Trans on Magnetics, 2020, 56(1): 1–6 [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.