吴 恒

发布者:宿琳发布时间:2025-09-05浏览次数:7775

姓名:吴恒

职称: 上岗研究员、青年首席教授、博士生导师

研究方向电力电子化电力系统的建模、稳定性分析、控制与继电保护

Email:hengwu@seu.edu.cn


个人简介:

吴恒,东南大学上岗研究员、青年首席教授,博士生导师。以第一/通讯作者发表IEEE期刊论文二十余篇。截至20268月,发表论文总引用量7000余次,其中5篇一作代表性论文总被引2200余次(三篇为ESI高被引论文,一篇获IEEE Transactions on Power Electronics Prize Paper Award);入选国家高层次青年人才计划;获教育部自然科学奖一等奖;从2019年起每年均入选斯坦福大学全球前2%顶尖科学家榜单,其中在能源、电机与电子工程领域排名全球前0.2%;担任“HVDCFACTS的频域建模与动态分析”IEEE工作组主席,加拿大、瑞典、以色列国家科学基金评审专家;负责开发了电力电子变换器阻抗测量与稳定性分析软件,并被全球多家电网公司和高校付费购买使用(软件试用版免费下载链接:https://www.aistability.dk/);担任IEEE Transactions on Power Electronics副编辑(Associate Editor)

吴博士近期的研究聚焦于构网型变流器的建模、稳定性分析与控制,担任两个聚焦构网型变流器的Cigre工作组JWG B4/C4.93WG B4.101小组负责人(subgroup leader);参与了英国电网、丹麦电网、芬兰电网构网型变流器标准起草或讨论。主持或参与了多项与南瑞继保、阳光电源、丹麦电网(Energinet)、比利时电网(Elia group)、荷兰皇家壳牌集团、挪威船级社等多家公司合作的关于构网型变流器系统建模、稳定性分析与控制算法设计的相关研究项目。



教育背景

2017.05-2020.06: 丹麦奥尔堡大学,博士

2012.09-2015.03: 南京航空航天大学,硕士

2008.09-2012.06: 南京航空航天大学,本科



工作背景

2025.09-至今: 东南大学,上岗研究员、青年首席教授

2022.01-2025.07: 丹麦奥尔堡大学,助理教授

2020.07-2021.12: 丹麦奥尔堡大学,博士后研究员

2015.06-2017.03: 南京南瑞继保电气有限公司,电气工程师

第一/通讯作者论文(引用次数来源于谷歌学术,20268月更新):

  1. Y. Xiong,H. Wu*, Y. Li and X. Wang*, "Analysis of power swing characteristics of grid-forming VSC system considering the current limitation mode,"IEEE Trans. Power Syst., doi: 10.1109/TPWRS.2026.3672709.

  2. C. Chen,H. Wu*, F. Zhao, Y. Li and X. Xiong, "Modeling and small-signal stability analysis of virtual synchronous generator control with dynamics of field winding electromagnetic transient and E-ꞷ coupling,"IEEE Trans. Power Electron.,. vol. 41, no. 8, pp. 14094-14114, Aug. 2026.

  3. Y. Li,H. Wu*, Y. Xiong, Z. Li and X. Wang*, "Impact of IEEE standard 2800-compliant inverters on the performance of phase selection elements in protective relays,"IEEE Trans. Ind. Electron.,vol. 73, no. 4, pp. 5710-5722, April 2026.

  4. Y. Li,H. Wu* and X. Wang*, "Impact of grid-forming inverters on protective relays: A perspective for current limiting control design,"IEEE Trans. Ind. Electron.,vol. 73, no. 2, pp. 2116-2127, Feb. 2026.

  5. Y. Li,H. Wu* and X. Wang*, "A protection-interoperable fault ride-through control for grid-forming inverters,"IEEE Trans. Ind. Electron.,vol. 73, no. 2, pp. 2415-2426, Feb. 2026.

  6. G. Humblot-Renaux, Y. Wu, S. Escalera, T. B. Moeslund, X. Wang andH. Wu*, "Uncertainty-aware stability analysis of IBR-dominated power system with neural networks,"IEEE Trans. Power Electron., vol. 40, no. 11, pp. 16055-16060, Nov. 2025 .

  7. Y. Xiong,H. Wu*, Y. Li and X. Wang*, "Comparison of power swing characteristics and efficacy analysis of impedance-based detections in synchronous generators and grid-following systems,"IEEE Trans. Power Syst., vol. 40, no. 3, pp. 2545-2556, May 2025.

  8. P. Huang,H. Wu*, L. Vanfretti and O. Gomis-Bellmunt, "Wideband impedance passivation of MMCs for suppressing harmonic oscillations,"IEEE Trans. Power Deliv., vol. 39, no. 6, pp. 3101-3113, Dec. 2024

  9. S. Liu, R. G. Cirstea,H. Wu*, T. Bosma and X. Wang*, "Comparative evaluation of converter control impact on torsional dynamics of Type-IV grid-forming wind turbines,"IEEE Trans. Sustain. Energy., vol. 15, no. 4, pp. 2803-2814, Oct. 2024.

  10. S. Liu,H. Wu*, T. Bosma and X. Wang*, “Impact of DC-Link voltage control on torsional vibrations in grid-forming PMSG wind turbines,”IEEE Trans. Energy Convers.,vol. 39, no. 4, pp. 2631-2642, 2024(IEEE Transactions on Energy Conversion Best Paper Award).

  11. H. Wu, X. Wang and L. Zhao, "Design considerations of current-limiting control for grid-forming capability enhancement of VSCs under large grid disturbances,"IEEE Trans. Power Electron., vol. 39, no. 10, pp. 12081-12085, Oct. 2024(引用次数: 92).

  12. H. Wu and X. Wang, "Control of grid-forming VSCs: a perspective of adaptive fast/slow internal voltage source,"IEEE Trans. Power Electron., vol. 38, no. 8, pp. 10151-10169, Aug. 2023(引用次数: 181IEEE Transactions on Power Electronics Prize Paper Award).

  13. X. Wang,H. Wu*, X. Wang, L. Dall and J. B. Kwon, "Transient stability analysis of grid-following VSCs considering voltage-dependent current injection during fault ride-through,"IEEE Trans. Energy Convers., vol. 37, no. 4, pp. 2749-2760, Dec. 2022.

  14. T. Lund,H. Wu*, H. Soltani, J. G. Nielsen, G. K. Andersen and X. Wang, "Operating wind power plants under weak grid conditions considering voltage stability constraints,"IEEE Trans. Power Electron.,vol. 37, no. 12, pp. 15482-15492, Dec. 2022.

  15. H. Wu and X. Wang, "Small-signal modeling and controller parameters tuning of grid-forming VSCs with adaptive virtual impedance-based current limitation,"IEEE Trans. Power Electron., vol. 37, no. 6, pp. 7185-7199, June 2022(引用次数: 162) .

  16. H. Wu and X. Wang, "Passivity-based dual-loop vector voltage and current control for grid-forming VSCs,"IEEE Trans. Power Electron., vol. 36, no. 8, pp. 8647-8652, Aug. 2021(引用次数: 80).

  17. H. Wuand X. Wang, “Virtual-flux-based passivation of current control for grid-connected VSCs”,IEEE Trans. Power Electron.,vol. 35, no. 12, pp. 12673-12677, Dec. 2020.

  18. H. Wu, X. Wang, and Ł. Kocewiak, “Impedance-based stability analysis of voltage-controlled MMCs feeding linear AC systems,”IEEE J. Emerg. Sel. Topics Power Electron., vol. 8, no. 4, pp. 4060-4074, Dec. 2020(引用次数: 109).

  19. H. Wu and X. Wang, “Dynamic impact of zero-sequence circulating current on modular multilevel converters: complex valued AC impedance modeling and analysis,”IEEE J. Emerg. Sel. Topics Power Electron.,vol. 8, no. 2, pp. 1947-1963, June 2020(引用次数: 88).

  20. H. Wuand X. Wang, "A mode-adaptive power-angle control method for transient stability enhancement of virtual synchronous generators,"IEEE J. Emerg. Sel. Topics Power Electron., vol. 8, no. 2, pp. 1034-1049, June 2020(引用次数: 284).

  21. H. Wu and X. Wang, “Design-oriented transient stability analysis of PLL-synchronized voltage-source converters,”IEEE Trans. Power Electron., vol. 35, no. 4, pp. 3573 - 3589, Apr. 2020(ESI高被引论文,引用次数: 528).

  22. H. Wu and X. Wang, “Design-oriented transient stability analysis of grid-connected converters with power synchronization control”IEEE Trans. Ind. Electron., vol. 66, no. 8, pp. 6473–6482, Aug. 2019(ESI高被引论文,引用次数: 422).

  23. H. Wu, X. Ruan, D. Yang, X. Chen, W. Zhao, Z. Lv and Q. C. Zhong,“Small-signal modeling and parameters design for virtual synchronousgenerators,”IEEE Trans. Ind. Electron., vol. 64, no. 7, pp. 4292–4303,Jul. 2016(ESI高被引论文,引用次数: 851).



科研项目:

  1. 国家高层次青年人才项目,并网变换器稳定控制,主持,2026.01-2028.12

  2. 国网总部科技项目,支撑直流安全运行的构网型SVG关键技术与性能评估实证研究,课题主持,2026.03-2028.03

  3. 南京南瑞继保电气有限公司合作项目,构网型变流器控制优化,主持,2026.03-2028.03




学术兼职:

  1. HVDCFACTS的频域建模和动态分析”IEEE工作组主席

  2. IEC工作组“Testing methods for equivalent converter impedance at AC side of VSC-HVDC systems”专家,中国高校唯一代表

  3. IEC工作组“Grid-forming energy storage systems (GFM ESS) in HVAC systems”国内对口工作组专家

  4. Cigre B4/C4.93工作组“Development of grid forming converters for secure and reliable operation of future electricity systems”专家,子工作组3负责人

  5. Cigre B4.101工作组“Industrial implementation and application of grid-forming energy storage systems (GFM ESS)”专家,子工作组2负责人

  6. Cigre B 4.85工作组“Interoperability in HVDC systems based on partially open-source software”专家。

  7. IEEE Transactions on Power Electronics副编辑(Associate Editor




人才培养:

在丹麦奥尔堡大学担任助理教授期间,作为博士副导师(PhD co-supervisor)指导博士生4名:

  1. Jacob Bollerslev,去向:丹麦电网Energinet

  2. 李弈飞,去向:南方电网科学研究院(入选拔尖级高层次人才)

  3. 刘诗怡,去向:荷兰电网TenneT

  4. 王鑫烁,去向:瑞典Hitachi Energy (ABB power grid)