Prof. Dr. Sun received the B.Sc. degree in electrical engineering, and the M.Sc. and Ph.D. degrees in control engineering from Jiangsu University, Zhenjiang, China, in 2004, 2008, and 2011, respectively. Since 2004, he has been with Jiangsu University, where he is currently a full Professor with the Automotive Engineering Research Institute. From 2014 to 2015, he was a Senior Visiting Scholar with the School of Electrical, Mechanical, and Mechatronic Systems, University of Technology Sydney, Sydney, Australia. His research topics mainly focus on optimization design and control algorithm of electrical machines and drive systems (permanent magnet machines, switched reluctance motor, bearingless machines, high-speed machines, etc.), drives and control for electric vehicles, optimization of hybrid vehicle control strategy, magnetic levitation technique, and so on. Dr. Sun is one Senior Member (Institute of Electrical and Electronics Engineers), Member of expert consulting group for the general vehicle equipment construction of the whole Party, Member of China society of automotive engineering, Member of China power society. He serves as the associate editor of several SCI journals, such as: Journal of Power Electronics, Electrical Engineering, International Journal of Electronics, IEEE Access, Advances in Mechanical Engineering, etc., and Regular Reviewer for more than ten IEEE/Elsevier Journals. |
Till now, Dr. Sun has mainly authored and co-authored more than 90 International Journal papers, of which 63 SCI papers are published as the first/corresponding author (39 as the first author, 10 papers are selected as ESI highly-cited papers). 1. X. Sun, L. Chen, H. Jiang, Z. Yang, J. Chen, and W. Zhang, “High-performance control for a bearingless permanent magnet synchronous motor using neural network inverse scheme plus internal model controllers,” IEEE Trans. Ind. Electron., vol. 63, no. 6, pp. 3479-3488, Jun. 2016. (ESI highly-cited papers, IF: 7.503) 2. X. Sun, B. Su, L. Chen, Z. Yang, X. Xu, and Z. Shi, “Precise control of a four degree-of-freedom permanent magnet biased active magnetic bearing system in a magnetically suspended direct-driven spindle using neural network inverse scheme,” Mech. Syst. Signal Process., vol. 88, pp. 36-48, 2017. (ESI highly-cited papers, IF: 5.005) 3. X. Sun, K. Diao, G. Lei, Y. Guo, and J. Zhu, “Study on segmented-rotor switched reluctance motors with different rotor pole numbers for BSG system of hybrid electric vehicles,” IEEE Trans. Veh. Technol., vol. 68, no. 6, pp. 5537-5547. 2019. (ESI highly-cited papers, IF: 5.339) 4. X. Sun, Y. Shen, S. Wang, G. Lei, Z. Yang, and S. Han. “Core losses analysis of a novel 16/10 segmented rotor switched reluctance BSG motor for HEVs using nonlinear lumped parameter equivalent circuit model,” IEEE/ASME Trans. Mechatronics, vol. 23, no. 2, pp. 747-757, Apr. 2018. (ESI highly-cited papers, IF: 4.943) 5. X. Sun, L. Chen, Z. Yang, and H. Zhu, “Speed-sensorless vector control of a bearingless induction motor with artificial neural network inverse speed observer,” IEEE/ASME Trans. Mechatron., vol. 18, no. 4, pp. 1357-1366, Aug. 2013. (ESI highly-cited papers, IF: 4.943) 6. X. Sun, Z. Shi, L. Chen, and Z. Chen, “Internal model control for a bearingless permanent magnet synchronous motor based on inverse system method,” IEEE Trans. Energy Convers., vol. 31, no. 4, pp. 1539–1548, Dec. 2016. (ESI highly-cited papers, IF: 4.614) 7. X. Sun, Z. Jin, S. Wang, Z. Yang, K. Li, Y. Fan and L. Chen, “Performance improvement of torque and suspension force for a novel five-phase BFSPM machine for flywheel energy storage systems,” IEEE Trans. Appl. Supercond., vol. 29, no. 2, Mar. 2019, Art. no. 0601505. (ESI highly-cited papers) 8. Z. Shi, X. Sun*, Y. Cai, Z. Yang, G. Lei, Y. Guo, and J. Zhu, “Torque analysis and dynamic performance improvement of a PMSM for EVs by skew angle optimization,” IEEE Trans. Applied Supercond., vol. 29, no. 2, Mar. 2019, Art. no. 0600305. (ESI highly-cited papers) 9. X. Sun, B. Su, S. Wang, Z. Yang, G. Lei, J. Zhu, and Y. Guo, “Performance analysis of suspension force and torque in an IBPMSM with V-shape PMs for flywheel batteries,” IEEE Trans. Magn., vol. 54, no. 11, Nov. 2018, Art. no. 810504. (ESI highly-cited papers) 10. X. Sun, C. Hu, J. Zhu, S. Wang, W. Zhou, Z. Yang, G. Lei, K. Li, B. Zhu and Y. Guo, “MPTC for PMSMs of EVs with multi-motor driven system considering optimal energy allocation,” IEEE Trans. Magn., vol. 55, no. 7, pp. 1-6, Jul. 2019, Art. no. 8104306. (ESI highly-cited papers) 11. X. Sun, L. Chen, and Z. Yang, “Overview of bearingless permanentmagnet synchronous machines,” IEEE Trans. Ind. Electron., vol. 60, no. 12, pp. 5528-5538, Dec. 2013. (IF: 7.503) 12. X. Sun, J. Cao, G. Lei, Y. Guo, and J. Zhu. Speed sensorless control for permanent magnet synchronous motors based on finite position set. IEEE Trans. Ind. Electron., 2019, in press. (IF: 7.503) 13. X. Sun, C. Hu, Gang Lei, Y. Guo, and J. Zhu, “State feedback control for a PM hub motor based on grey wolf optimization algorithm,” IEEE Trans. Power Electron., vol. 35, no. 1, pp. 1136-1146, Jan. 2020. (IF: 7.224) 14. X. Sun, K. Diao, G. Lei, Y. Guo, and J. Zhu, “Real-time HIL emulation for a segmented-rotor switched reluctance motor using a new magnetic equivalent circuit,” IEEE Trans. Power Electron., 2019, in press. (IF: 7.224) 15. X. Sun, K. Diao, Z. Yang, G. Lei, Y. Guo, and J. Zhu. Direct torque control based on a fast modeling method for a segmented-rotor switched reluctance motor in HEV application. IEEE J. Emerg. Sel. Topics Power Electron., 2019, in press. (IF: 5.972) 16. X. Sun, Z. Shi, G. Lei, Y. Guo, and J. Zhu. “Analysis and design optimization of a permanent magnet synchronous motor for a campus patrol electric vehicle,” IEEE Trans. Veh. Technol, vol. 68, no. 11, pp. 10535-10544, Nov. 2019. (IF: 5.339) |