王 栋
姓名:王栋
职称:副教授
研究方向:新能源并网稳定运行、水轮机/抽蓄调速优化控制、人工智能应用
主讲课程:电气工程基础、电力能源互联网、发电厂电气系统
邮箱:dongwang@whut.edu.cn QQ: 920358765
副教授,硕士生导师,长期从事含高比例新能源的新型电力系统稳定分析与控制研究。具体方向涵盖:1)风光新能源系统动态建模、稳定分析及主动支撑控制;2)水轮机调速系统优化控制;3)人工智能结合的电力系统稳定运行调控。主持国家自然科学基金青年项目1项,湖北省自然科学基金1项,主持/主研国重实验室开放基金、国网/南网、长江电力等企业项目多项。发表SCI/EI论文30余篇,授权发明专利10余项。获中国电源学会科技进步奖二等奖1项、IEEE TEC Best Paper Award一项。担任IEEE TSG、TIE、TPE、TEC及CSEE JPES、MPCE等期刊审稿人。
2008.09~2012.06 华中科技大学 电气工程及其自动化 学士
2012.09~2015.06 华中科技大学 电力电子与电力传动 硕士
2015.09~2019.07 香港大学 电力系统及其自动化 博士
2018.01~2018.06 美国阿贡国家实验室 访问交流
2018.09~2024.01 BEST365 BEST365 讲师、副研究员
2024.01~至今 BEST365 BEST365 副教授
招生信息:
每年招收电气工程、控制工程、电子信息等专业学硕/专硕3名左右,欢迎本科生入组交流,指导科创项目/竞赛及相关论文、专利发表。
(1)课题组的理念:合作共赢,共同进步,英雄不问出处
(2)对同学的期望:阳光开朗、有自驱力、乐于沟通、脚踏实地、志向远大;研究生三年能够踏实完成学业,有所成长,不负青春,课题组谢绝躺平
(3)教师的义务:营造积极融洽的团队氛围,提供台式机办公硬件、劳务津贴等支持,指导同学尽快在一二年级完成毕业论文主体内容,及学术论文发表,完成毕业条件外的高水平论文、科研项目提供额外奖励
毕业生去向:
26届:国网江苏南京市供电公司
贵阳联通公司
25届:国网山东临沂市供电公司(优秀硕士学位论文)
国家能源集团化工工程
24届:南京南瑞继保
科研项目:
1. 国家自然科学基金青年项目(52307217),含频率控制的双馈风机机电耦合特性及其对系统稳定的影响机理研究,2024.01-2026.12,主持
2. 强电磁国重实验室开放基金,计及直流侧动态耦合的构网型风电并网系统多模式稳定性分析,2026.04-2027.04,主持
3. 湖北省重点研发项目,大型水轮机组调速系统一次调频关键技术研究与应用,2025.09-2027.09,主研
4. 长江电力自主科研项目,弱电网下风光水系统电压振荡机理分析及抑制措施研究,2025.01-2026.06,主持
5. 南方电网科技项目,含高比例可再生能源的广西电网生存能力分析与仿真系统研发,2023.11-2025.3,主研
6. 湖北省自然科学基金青年项目,多双馈风机并联接入弱交流电网的小扰动稳定性分析,2020.03-2022.12, 主持
7. 长江三峡能事达电力股份有限公司,三峡能事达-BEST365联合研发中心,2022.10-2025.09,主研
8. 中央高校基本科研业务费专项资金,电网友好型风机调频技术要求分析及优化控制,2022.01-2022.10,主持
9. 国网湖北送变电工程有限公司,特高压工程建设施工专用工器具研究,2021.12-2021.01,主持
10. 中央高校基本科研业务费专项资金,含频率控制风机对电力系统机电稳定性影响的机理研究,2021.01-2021.10,主持
11. 国家自然科学基金面上项目(51677160),极端气候条件下构建智能电网弹性运行策略基础性研究,2017.01-2020.12,参与
代表性论文:
1. Dong Wang, Yajun Guo, Yunhui Huang, Keliang Zhou and Shuo Wang. “Torsional Vibration Analysis of Virtual-Synchronous-Controlled DFIG-Based Wind Turbines [J],” IEEE Trans. Sustainable Energy., 2025, 16(3), 2044-2057.
2. Dong Wang, Jun Tian, Yunhui Huang, Keliang Zhou and Shuo Wang. “Impact of the Frequency Support Provided by Grid-Forming DFIG-Based Wind Turbine on Power System Ultra-Low Frequency Oscillation [J],” IEEE Open Access Journal of Power and Energy., 2026, R2 review.
3. 王栋, 田军, 黄云辉,等.构网型双馈风机对电力系统超低频振荡特性的影响分析[J].电力系统自动化, 2026, 50(02):146-161.
4. Dong Wang, Liang Liang, Jiabing Hu, Naichao Chang and Yunhe Hou. Analysis of Low-Frequency Stability in Grid-Tied DFIGs by Nonminimum Phase Zero Identification[J]. IEEE Transactions on Energy Conversion, 2018, 33(2): 716-729. (Best Paper Award)
5. Yunhui Huang; Lingyun Wang; Sidong Zhang; Dong Wang*; Xiangtian Deng; Guorong Zhu. Impacts of Phase-Locked Loop Dynamic on the Stability of DC-Link Voltage Control in Voltage Source Converter Integrated to Weak Grid[J]. IEEE Journal on Emerging and Selected Topics in Circuits and Systems, 2022 48-58.
6. Dong Wang, Liang Liang, Shi Lei, Jiabing Hu and Yunhe Hou. Analysis of Modal Resonance Between PLL and DC-Link Voltage Control in Weak-Grid Tied VSCs [J]. IEEE Transactions on Power Systems, 2018, 34(2): 1127-1138.
7. Dong Wang, Yunhe Hou, Jiabing Hu. Comparative analysis of stability limitations in weak grid-connected synchronous generator, VSC, and DFIG systems considering the power flow control dynamics [J]. IET Renewable Power Generation, 2019, 13(1): 94-102.
8. Dong Wang, Yunhe Hou, Jiabing Hu. Net damping criterion for stability analysis of grid-tied VSCs in DC voltage control timescale [J]. CSEE Journal of Power and Energy Systems, 2020, 6(3): 601-609.
9. Dong Wang, Huang Yunhui, Min Liao, Guorong Zhu and Xiangtian Deng. Grid-Synchronization Stability Analysis for Multi DFIGs Connected in Parallel to Weak AC Grids [J]. Energies, 2019, 12(22): 4361.
10. Dong Wang, Xiaojie Zhang, Lei Yang, Yunhui Huang, Wei Huang, Chen Wu and Shengnan Li. Analysis of Synchronization Stability for Multi VSCs Parallel-Connected to Weak Grids by Improved Net Damping Criterion. Energies, 2020, 13(13): 3316.
11. Dong Wang, Houquan Chen, Yunhui Huang, Xiangtian Deng and Guorong Zhu. Modeling and Stability Analysis of Weak-Grid Tied Multi-DFIGs in DC-Link Voltage Control Timescale [J]. Energies, 2020, 13(14): 3689.
12. Yunhui Huang and Dong Wang. Effect of control loops interactions on power stability limits of VSC with integrated to AC system [J]. IEEE Transactions Power Delivery, 2018, 33(1): 301-310.
13. Yunhui Huang, Dong Wang, Lei Shang, etc. Modeling and stability of DC-link voltage control in multi VSCs with integrated to weak grid [J]. IEEE Transactions on Energy Conversion, 2017, 32(3): 1127-1138.
14. Yunhui Huang, Xiaoming Yuan, Jiabing Hu, Pian Zhou, and Dong Wang, DC-Bus Voltage Control Stability Affected by AC-Bus Voltage Control in VSCs Connected to Weak AC Grids [J]. IEEE Journal of Emerging and Selected Topics in Power Electronics, 2016, 4(2):445-458.
15. Jiabing Hu, Yunhui Huang, Dong Wang, Hao Yuan and Xiaoming Yuan. Modeling of grid-connected DFIG-based wind turbines for DC-link voltage stability analysis [J]. IEEE Transactions Sustainable Energy, 2015, 6(4):1325-1336.
16. Dong Wang, Xiaolan Lu and Yunhe Hou, “Interaction analysis of vector- and droop-controlled VSCs in parallel,” IEEE PES Innovative Smart Grid Technologies Conference (ISGT), Washington, DC, USA, Feb. 2019.
17. Dong Wang, Yuefeng Wang and Yunhe Hou, “Stability of stator-flux-based controlled DFIG with weak AC grids,” IEEE PES Innovative Smart Grid Technologies Conference (ISGT), Sarajevo, Bosnia and Herzegovina, Oct. 2018.
18. Dong Wang, Yunhe Hou, and Jiabing Hu, "Effect of AC voltage control on the stability of weak AC grid connected DFIG system," Proc. 2016 IEEE PES Asia-Pacific Power and Energy Engineering Conference (APPEEC), Xi’an, China, Oct. 2016.
19. Dong Wang, Yunhe Hou and Jiabing Hu, “Stability of DC-Link Voltage Control for Paralleled DFIG-Based Wind Turbines Connected to Weak AC Grids,” Proc. 2016 IEEE PES General Meeting, Boston, USA, Jul. 2016.
20. Dong Wang, Liang Liang and Yunhe Hou, “Conservative Voltage Reduction by Electric Spring for Energy Saving,” IET Annual Power Symposium 2016, Hong Kong, Jun. 2016
21. Dong Wang, Jiabing Hu, Yunhui Huang, N. et al, “Stability of DC-Link voltage affected by phase-locked loop for DFIG-based wind turbine connected to a weak AC system,” in Proc. 17th Int. Conf. Elect. Mach. Syst., 2014, pp. 2600-2606, Hangzhou, China.
**更新日期:2026年5月
