胡海涛 教授

博士生导师

硕士生导师

个人信息Personal Information


学位:工学博士学位

办公地点:西南交通大学(犀浦)电气馆402室

在职信息:在岗

主要任职:博士生导师

毕业院校:西南交通大学

学科:能源动力. 电气工程

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论文成果

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代表性论文:

  1. Haitao Hu, Haidong Tao, Frede Blaabjerg, Xiongfei Wang, Zhengyou He*, Shibin Gao. Train-Network Interactions and Stability Evaluation in High-Speed Railways--Part I: Phenomena and Modeling [J]. IEEE Trans. on Power Electronics. 2018, 4643-4659. (连载论文,ESI热点论文)【宽频带振荡】

  2. Haitao Hu, Haidong Tao, Xiongfei Wang, Frede Blaabjerg, Zhengyou He*, Shibin Gao. Train-Network Interactions and Stability Evaluation in High-Speed Railways--Part II: Influential Factors and Verifications [J]. IEEE Trans. on Power Electronics. 2018, 4643-4659. (连载论文)【宽频带振荡】

  3. Haitao Hu*, Zhengyou He, Xin Li, et al. Power Quality Impact Assessment for High-speed Railway Associated with High-speed Trains Using Train Timetable -- Part I: Methodology and Modeling [J]. IEEE Trans. on Power Delivery, 2016, 31(2): 693-703. (连载论文)【动态潮流】

  4. Haitao Hu*, Zhengyou He, Ke Wang, et al. Power Quality Impact Assessment for High-speed Railway Associated with High-speed Trains Using Train Timetable -- Part II: Verifications, Es-timations and Applications [J].IEEE Trans. on Power Delivery, 2016, 31(4): 1482-1492. (连载论文)【动态潮流】

  5. Haitao Hu*, Yang Shao, Li Tang, Jin Ma, Zhengyou He, Shibin Gao. Overview of Harmonic and Resonance in Railway Electrification Systems[J]. IEEE Trans. on Industry Applications, 2018, 54(5): 5227-5245. (综述论文)【宽频带振荡】

  6. Haitao Hu*, Yi Zhou, Xin Li, Ke Lei. Low-frequency Oscillation in Electric Railway Depot: A Comprehensive Review[J]. IEEE Trans. on Power Electronics. 2021, 36(1): 295-314.(综述论文)【宽频带振荡】

  7. Zhaoyang Zhao, Haitao Hu*, Zhengyou He, et al. Power Electronics-Based Safety Enhancement Technologies for Lithium-Ion Batteries: An Overview From Battery Management Perspective [J].  IEEE Trans on Power Electronics. 2023, 38(7): 8922-8955.(综述论文)【锂电池安全】

  8. Anqi Geng, Haitao Hu*, Yuanzhen Peng, et al. Wideband Measurement Approach for EIS of Lithium-Ion Batteries Using Low-Frequency Concentrated Disturbance[J]. IEEE Trans. on Industrial Electronics. 2023.【锂电池安全】

  9. Haitao Hu, Yi Zhou, Jie Yang, Zhengyou He*, Shibin Gao. A Practical Approach to Mitigate Low-Frequency Oscillation in Railway Electrification Systems[J]. IEEE Trans. on Power Electronics. 2018, 33(10): 8198-8203. 【宽频带振荡】

  10. Haitao Hu*, Pengyu Pan, Yitong Song, Zhengyou He. A Novel Controlled Frequency Band Impedance Measurement Approach for Single-phase Railway Traction Power System [J]. IEEE Trans. on Industrial Electronics, 2020, 67(1): 244-253. ESI高被引论文【阻抗测量】

  11. Haitao Hu*, Yunjiang Liu, Xiaowei Yang, et al. A Decentralized Coordinated Control Strategy for Multiple Traction Substations in MVDC Railway Power Supply SystemIEEE Trans. on Transportation Electrification. 2023.【源网荷储】

  12. Haitao Hu*, Qingxin Shi, Zhengyou He, Jinwei He, Shibin Gao. Potential Harmonic Resonance Impacts of PV Inverter Filters on Distribution Systems [J].IEEE Trans. on Sustainable Energy, 2015, 6(1): 151-161. 【宽频带振荡】

  13. Haitao Hu, Shibin Gao*, Yang Shao, Ke Wang, Zhengyou He, Lihua Chen. Harmonic Resonance Evaluation for Hub Traction Substation Consisting of Multiple High-speed Railways [J]. IEEE Trans. on Power Delivery, 2017, 32(2): 910 – 920.【宽频带振荡】

  14. Haitao Hu*, Zhengyou He, Shibin Gao. Passive Filter Design for China High-Speed Railway with Considering Harmonic Resonance and Characteristic Harmonics [J]. IEEE Trans. on Power Delivery, 2015, 30(1): 505-514. 【宽频带振荡】

  15. Haitao Hu*, Zhengyou He, Yangfan Zhang, Shibin Gao. Modal Frequency Sensitivity Analysis and Application Using Complex Nodal Matrix [J]. IEEE Trans. on Power Delivery, 2014, 29(2): 969-971. 【宽频带振荡】

  16. Haitao Hu*, Haizhu Liao, Yi Huang, Yinbo Ge, Ke Wang, Gang Chen, Xugang Guo.   A Three-Stage Optimization Strategy for Techno-Economic Operation of Railway Flexible Traction Substations [J]. IEEE Trans. on Smart Grid, 2024. Accepted 【源网荷储】

  17. Junyu Chen, Haitao Hu, Minghao Wang, et al.  Power Flow Control-Based Regenerative Braking Energy Utilization in AC Electrified Railways: Review and Future Trends[J]. IEEE Transactions on Intelligent Transportation Systems2024. Accepted 【源网荷储】

  18. Yanglong Liu, Haitao Hu*,  Ke Wang, Yinbo Ge, Yi Huang.  Coordinated Maximum Power Demand Shaving of Multi-traction Substations With Train Timetable Optimization[J]. IEEE Trans. on Transportation Electrification. 2024. Accepted【源网荷储】

  19. Donghua Xiao, Haitao Hu*, Xiangyang Yang, Yitong Song, Pengyu Pan, Zhengyou He. High-Speed Train Impedance Measurement Approach Based on Adaptive Multifrequency Voltage Disturbance[J]. IEEE Trans. on Industial Electronics, 2024. Accepted 【阻抗测量】

  20. 何正友,胡海涛,方雷,张民,高仕斌.高速铁路牵引供电系统谐波及其传输特性研究[J].中国电机工程学报,2011.

  21. 胡海涛,葛银波,黄毅,等. 电气化铁路“源–网–车–储”一体化供电技术中国电机工程学报,2021.

  22. 胡海涛,陈俊宇,葛银波,何正友*. 高速铁路再生制动能量储存与利用技术研究[J]. 中国电机工程学报. 2020.

  23. 胡海涛,杨凯,葛银波,等. 电气化铁路分区所再生制动能量利用系统及其控制策略研究[J]. 中国电机工程学报. 2023.

  24. 胡海涛,郑政,何正友*,魏波,王科、魏文婧. 交通能源互联网体系架构及关键技术[J]. 中国电机工程学报,2018.

  25. 胡海涛,何正友*,张民,高仕斌,钱清泉.高速铁路全并联AT供电系统串联谐振分析[J].中国电机工程学报,2012.

  26. 胡海涛,何正友*,王江峰,高仕斌,钱清泉.基于车网耦合的高速铁路牵引网潮流计算[J].中国电机工程学报,2012.

  27. 胡海涛,何正友,王江峰.考虑谐波功率修正的地铁交直流潮流计算方法[J].中国电机工程学报,2012.

  28. 胡海涛,孟玺,杨孝伟,刘芸江. 新型24kV柔性直流铁路牵引供电系统分层控制策略研究[J]. 中国电机工程学报,2020.

  29. 陶海东,胡海涛*,朱晓娟,何正友.车网耦合下的牵引供电系统谐波不稳定机理分析[J]. 中国电机工程学报,2019.

  30. 宋依桐,胡海涛*,肖冬华,潘鹏宇,何正友,牵引供电系统注入式谐波阻抗测量的扰动限值选定方法[J]. 中国电机工程学报, 2020.

  31. 周毅,胡海涛*,杨孝伟,何正友. 电气化铁路车网耦合系统低频振荡分析[J]. 中国电机工程学报,2017.

  32. 刘芸江,胡海涛*,杨孝伟,等. 24 kV柔性直流牵引供电系统潮流计算方法与供电特性分析[J]. 电工技术学报,2023.

  33. Haitao Hu, Yunjiang Liu, Zhengyou He. Traction power systems for electrified railways: evolution, state of the art, and future trends[J]. Railway Engineering Science,2024, 32(1): 1-19.

  34. 杨向阳,胡海涛*,肖冬华,等. 电气化铁路“车-网”系统串/并联双模式宽频谐波扰动产生装置设计与测量方法[J]. 中国电机工程学报, 2023.