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个人简介

2014年于哈尔滨工业大学获电气工程及其自动化学士学位,2014年至2016年于上海电气风能集团任主控工程师,2017年至2021年于英国谢菲尔德大学获电气工程硕士,博士学位。2022年9月加入同济大学电子与信息工程学院电气工程系。主持上海市“浦江人才计划”,多个校企合作项目。目前发表SCI/EI 论文15篇,国内外专利4件。 主持项目 上海市“浦江人才计划”项目,新型强散热高功率密度高速永磁电机关键技术研究,2022.10-2024.9 中央高校自主原创基础研究项目,基于非晶合金的高功率密度高能效高速永磁电机研究,2022.11-2024.10 美的集团中央研究院校企合作项目,新型超高速永磁电机及驱动设计,2017.10-2019.10 丰田集团英国研发中心IMRA校企合作项目,新能源汽车散热先行研究,2020.10-2021.10

研究领域

电机设计及驱动控制,新型永磁电机及驱动研究,高速永磁电机应用

近期论文

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T. R. He, Z Q Zhu, Fan Xu, Hong Bin, Di Wu, Liming Gong, and Jintao Chen, “Comparative study of 6-slot/2-pole high-speed permanent magnet motors with different winding configurations,” IEEE Transactions on Industry Applications, vol.57, no.6, pp.5864-5875, Nov./Dec. 2021. T. R. He, Z. Q. Zhu, F. Xu, Y. Wang, H. Bin, and L. M. Gong, “Electromagnetic performance analysis of 6-slot/2-pole high-speed permanent magnet motors with coil-pitch of two slot-pitches,” IEEE Transactions on Energy Conversion, 08 Nov. 2021, doi:10.1109/TEC.2021.3125005. T. R. He, Z. Q. Zhu, F. Xu, Y. Wang, B. Hong, and L. Gong, “Influence of rotor eccentricity on electromagnetic performance of 2-pole/3-slot PM motors,” IEEE Transactions on Energy Conversion, 21 Jul. 2021, doi: 10.1109/TEC.2021.3098669. T. R. He, Z. Q. Zhu, F. Eastham, Y. Wang, H. Bin, and L. M. Gong, “Permanent magnet machines for high-speed applications,” World Electr. Veh. J., vol. 13(1), pp. 18. Jan. 2022, doi: 10.3390/wevj13010018. F. Xu, T. R. He, Z. Q. Zhu, Y. Wang, S. Cai, H. Bin, D. Wu, L. M. Gong, and J. T. Chen, “Influence of slot number on electromagnetic performance of 2-pole high-speed permanent magnet motor with toroidal winding,” IEEE Transactions on Industry Applications, 06 Oct. 2021, doi:10.1109/TIA.2021.3117739. T. R. He, Z. Q. Zhu, F. Xu, et al., “Influence of circulating currents on electromagnetic performance of 6-slot/2-pole high-speed PM motors with rotor eccentricity,” IEEE Energy Conversion Congress & Exposition (ECCE), Detroit, Michigan, USA, 2022. F. Xu, T. R. He, Z. Q. Zhu, et al., “Comparison of slotted and slotless high-speed permanent magnet motors with toroidal windings,” IEEE Energy Conversion Congress & Exposition (ECCE), Detroit, Michigan, USA, 2022. T. R. He, Z. Q. Zhu, et al., “Influence of winding configurations on inductances in 2-pole high-speed permanent magnet machines,” IET International Conference on Power Electronics, Machines and Drives (PEMD), Newcastle, UK, 2022. T. R. He, Z. Q. Zhu, et al., “Comparison of 6-slot/2-pole high-speed permanent magnet motors with different winding configurations,” 2020 Fifteenth International Conference on Ecological Vehicles and Renewable Energies (EVER), Monte-Carlo, Monaco, 2020, pp. 1-8. Fan Xu, T. R. He, Z. Q. Zhu, et al., “Investigation of permanent magnet segmentations and gaps in 2-pole high-speed permanent magnet motor with toroidal winding,” 2022 International Conference on Electrical Machines and Systems (ICEMS), Chiang Mai, Thailand, 2022. F. Xu, T. R. He, Z. Q. Zhu, et al., “Comparison of 2-pole slotted high-speed motors with toroidal and tooth-coil windings,” International Electrical and Energy Conference (CIEEC 2022), Nanjing, China, 2022. Fan Xu, T. R. He, Z. Q. Zhu, et al., “Influence of slot number on electromagnetic performance of 2-pole high-speed permanent magnet motors with toroidal windings,” 2020 Fifteenth International Conference on Ecological Vehicles and Renewable Energies (EVER), Monte-Carlo, Monaco, 2020, pp. 1-7. D. W. Liang, Z. Q. Zhu, and T. R. He, “Analytical multi-element rotor thermal modelling accounting for retaining sleeve in high-speed PM machines,” International Conference on Electrical Machines (ICEM 2022), Valencia, Spain, 2022. D. Xiang, Z. Q. Zhu, T. R. He, et al., “Influence of rotor eccentricity on cogging torque of permanent-magnet machines with manufacturing tooth bulges,” IET International Conference on Power Electronics, Machines and Drives (PEMD), Newcastle, UK, 2022. F. Xu, Z. Q. Zhu, T. R. He, Y. Wang, H. Bin, D. Wu, L. M. Gong, and J. T. Chen, “Influence of stator gap on electromagnetic performance of 6-slot/2-pole modular high speed permanent magnet motor with toroidal windings,” IEEE Access, vol. 9, pp. 94470-94494, 2021, doi:10.1109/ACCESS.2021.3092053.

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