黄云辉(能源动力专业)
研究方向:构网型储能技术、新能源并网发电稳定运行,电力电子化电力系统
主讲课程:智能电网新技术,电力电子化电力系统,
科研:主持了国家自然科学基金项目3项、广东省基础与应用基础研究基金海上风电联合基金面上项目1项、国家重点实验室开放基金1项、广东省重点实验室开放基金1项、中央高校专项基金2项、国家电网/南方电网科技项目多项。
[1] 国家自然科学基金面上项目,计及电-热能量耦合的构网型储能多机系统稳定机理及控制研究,2026/01-2029/12,主持;
[2] 国家自然科学基金智能电网联合基金子课题项目,构网型储能变流器统一动力学建模及能量交互特性分析,2025/01-2028/12,主持;
[3] 国家自然科学基金青年项目,柔性直流输电网络直流电压时间尺度稳定性机理及优化控制研究,2017/01-2019/12,主持;
[4] 广东省基础与应用基础研究基金海上风电联合基金面上项目,经交流电缆外送的海上风电机组无功振荡机理分析及优化控制研究,2024/01-2016/12,主持;
[5] 广西电网公司科技项目,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,2023/12-2025/3,主持;
[6] 湖北电网公司科技项目,大扰动下新能源系统暂态稳定分析外委研究,2023/12-2025/3,2023/10-2024/12,主持;
[7] 湖北电网公司科技项目,面向不同新能源占比的变流器配置外协测试,2023/12-2025/3,2023/10-2024/12,主持;
[8] 湖北省电力规划设计研究院科技项目,双碳目标下百万千瓦级新能源基地接入关键技术及工程应用,2022/10-2023/10,主持;
[9] 广东省新能源电力系统智能运行与控制企业重点实验室开放基金项目,提升高比例新能源电力系统稳定性的储能优化配置方法,2022/01-2023/12,主持;
[10] 南方电网科技项目,区域电网建模及分析服务项目,2021/12-2022/6,主持;
[11] 国网普瑞特高压输电技术公司科技项目,常州电力推进船舶技术开发合同项目理论研究服务,2021/11-2022/12,主持;
[12] 国网湖南电网公司科技项目,电化学储能电站群在特高压交直流混联受端电网应用关键技术研究及示范外委项目,2019/05-2021/10,主持;
[13] 国网新源公司科技项目,基于光伏储能系统的抽水蓄能电站备用电源的可靠性优化研究,2019/01-2020/12,主持;
[14] 华中科技大学科技项目,柔性直流网络稳定性分析与优化控制软件定制,2018/10-2019/6,主持;
[15] 国网安徽经研院科技项目,基于多元负荷发展的配电网协调规划,2017/06-2018/12,主持;
[16] 新能源与储能运行控制国家重点实验室开放基金,多电压源型并网变换器直流电压时间尺度稳定机理与优化控制研究,2017/01-2017/12,主持;
[17] 中央高校基本科研业务费专项资金资助项目,163111006,风电并网多时间尺度稳定性分析与优化控制研究,2016/01-2016/12,主持;
[18] 先进输电技术国家重点实验室开放基金项目,风电机群接入MMC-HVDC引发次同步振荡的机理研究及交互影响分析,2017/04-2018/04,参与;
[19] 工信部科技项目,大型邮轮11kV岸电系统关键技术研究,2018/01-2020/12,参与。
发表论文:发表学术论文65篇
[1] X. Ji, J. Wen, Y. Huang*. Modeling and stability analysis of multi grid-forming converters with connected to low-impedance grid[J]. IEEE Transactions on Power Delivery, 2025, 40(5): 2479-2492. (IEEE期刊论文,SCI检索)
[2] D. Wang, Y. Guo, Y. Huang*, K. Zhou, S. Wang. Torsional vibration analysis of virtual-synchronous-controlled DFIG-based wind turbines[J]. IEEE Transactions on Sustainable Energy, 2025, 16(3): 2044-2057. (IEEE期刊论文,SCI检索)
[3] 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, 12(1): 48-58. (IEEE期刊论文,SCI检索)
[4] Yunhui Huang*, and Dong Wang. Effect of Control Loops Interactions on Power Stability Limits of VSC Integrated to AC System [J]. IEEE Trans. Power Del., 2018, 33(1): 301-310. (IEEE期刊论文,SCI检索)
[5] Yunhui Huang*, Xuebing Zhai, Jiabing Hu, Dong Liu and Chang Lin. Modeling and Stability Analysis of VSC Internal Voltage in DC-Link Voltage Control Time Scale [J]. Emerging and Selected Topics in Power Electronics, IEEE Journal of, 2018, 6(1): 16-28. (IEEE期刊论文,SCI检索)
[6] Yunhui Huang, Dong Wang, Lei Shang*, and Guorong Zhu. Modeling and Stability Analysis of DC-Link Voltage Control in Multi VSCs with Integrated to Weak Grid [J]. IEEE Trans. Energy Conversion, 2017, 32(3): 1127-1138. (IEEE期刊论文,SCI检索)
[7] Yunhui Huang, Xiaoming Yuan, Jiabing Hu*, and Pian Zhou. DC-bus voltage control stability affected by AC-bus voltage control in VSCs connected to weak AC grids [J]. Emerging and Selected Topics in Power Electronics, IEEE Journal of, 2016, 4(2):445-458. (IEEE期刊论文,SCI检索)
[8] Yunhui Huang, Xiaoming Yuan, Jiabing Hu*, and Pian Zhou. Modeling of VSC connected to weak grid for stability analysis of DC-link voltage control [J]. Emerging and Selected Topics in Power Electronics, IEEE Journal of, 2015, 3(4):1193-1204.(IEEE期刊论文,SCI检索)
[9] 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 Trans. Sustain. Energy, 2015, 6(4):1325-1336. (IEEE期刊论文,SCI检索)
[10] 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. (SCI检索)
[11] 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. (SCI检索)
[12] 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. (SCI检索)
[13] Lei Shang, Jiabing Hu, Xiaoming Yuan, Yunhui Huang, Improved virtual synchronous control for grid-connected VSCs under grid voltage unbalanced conditions [J]. J. Mod. Power Syst. Clean Energy, 2018, to be published. (SCI检索)
[14] Yunhui Huang, Xiaoming Yuan* and Jiabing Hu, Effect of reactive power control on stability of DC-link voltage control in VSC connected to weak grid, 2014 IEEE PES General Meeting, National Harbor, MD, USA, 2014.7.27-7-31.(EI检索)
[15] P. Zhou, Xiaoming Yuan, Jiabing Hu*, and Yunhui Huang, Stability of DC-link voltage as affected by phase locked loop in VSC when attached to weak grid, in Proc. 2014 IEEE PES General Meeting, Jul. 2014. (EI检索)
[16] Dong wang, Jiabing Hu* and Yunhui Huang, Stability of DC-link voltage affected by phase-locked loop for DFIG-based wind turbine connected to a weak AC system, presented at the 17th International Conference on Electrical Machines and Systems, Hangzhou, China, 2014. (EI检索)
[17] Y. Huang, F. Chen, D. Wang, S. Zhang, G. Zhu and K. Zhou. Small Signal Modeling and Interaction Analysis of Multi-VSCs System Connected to Weak Grid[J]. CPSS Transactions on Power Electronics and Applications, 2023, 8(1): 74-86. (EI检索)
[18] 龚梓轩,黄云辉,朱建行,等.不对称电网下的构网型变流器线性周期时变建模及稳定性分析[J/OL].高电压技术,1-11[2026-01-22]. (EI检索)
[19] 龚梓轩,黄云辉,王栋,等.基于频率补偿的构网型变流器次同步振荡抑制策略[J/OL].高电压技术,1-12[2026-01-22]. (EI检索)
[20] 何佐仁,黄云辉,王栋,等.基于虚拟母线电压控制的跟网型与构网型并联系统稳定性优化[J].智慧电力,2025,53(06):19-27. (EI检索)
[21] 陈永康,黄云辉,方正,等.低阻抗下构网型变流器多机系统小信号建模与稳定性分析[J].电力工程技术,2025,44(02):13-22.
[22] 杨天鑫,黄云辉,陈付恩,等.含调频控制的双馈风机接入交流电网的机电时间尺度稳定性分析[J].现代电力,2025,42(06):1210-1219.
[23] 方正,黄云辉,严文博,等.构网型与跟网型变流器交互作用对并联系统小干扰稳定性的影响分析[J].电力自动化设备,2025,45(02):134-142. (EI检索)
[24] 杨天鑫,黄云辉,何珍玉,等.基于多时间尺度调节的构网型储能电站定容选址优化配置[J].电力系统自动化,2024,48(23):54-64. (EI检索)
[25] 方正,黄云辉,严文博,等.构网型变流器功率同步控制稳定性机理分析[J].电力系统自动化,2024,48(19):101-108. (EI检索)
[26] 严文博,黄云辉,方正,等.低阻抗下构网型变流器稳定性机理分析[J].高电压技术,2025,51(03):1444-1453. (EI检索)
[27] 赵鹏,黄云辉,王栋,等.基于有源阻尼控制的区域电网新能源基地次同步振荡抑制的研究[J].智慧电力,2024,52(04):85-90+115. (EI检索)
[28] 严文博,黄云辉,熊斌宇,等.基于神经网络的船舶综合电力系统负荷组合预测研究[J].舰船科学技术,2024,46(07):112-120.
[29] 罗轩,黄云辉,熊斌宇.基于配电网-路网融合的移动储能车多场景时空协同优化调度策略[J].智慧电力,2023,51(08):30-37+66. (EI检索)
[30] 杨天鑫,黄云辉,唐金锐,等.高比例新能源下含调频控制的储能系统多目标优化[J].高电压技术,2023,49(07):2744-2753. (EI检索)
[31] 王凌云,王红兵,黄云辉,等.弱电网不对称故障下正负序电流控制耦合作用对DFIG稳定性影响分析[J].智慧电力,2022,50(10):15-22. (EI检索)
[32] 席云烽,唐超,黄云辉,等.风电接入弱送端柔直系统次同步振荡主导模式及参与因子分析[J].电测与仪表,2024,61(12):125-132.
[33] 黄云辉,王凌云,喻恒凝,等.弱电网下双馈风力发电系统的稳定性极限研究[J].电力工程技术,2022,41(04):9-17.
[34] 曾令全,王栋,黄云辉,等.含惯量控制的高渗透率风电接入交直流混联输电系统的稳定性分析[J].现代电力,2022,39(04):406-413.
[35] 马天诚,黄云辉,王栋,等.弱电网不对称故障下基于正负序解耦的锁相环设计与研究[J].智慧电力,2022,50(01):108-114. (EI检索)
[36] 朱当,黄云辉,刘士琦,等.弱电网下基于虚拟母线电压控制的双馈风机稳定性优化研究[J].智慧电力,2021,49(10):30-37+44. (EI检索)
[37] 张思东, 黄云辉*, 周党生, 邢中卫, 陈付恩, 朱国荣. 弱电网下VSC控制环路对直流电压稳定性的影响分析[J]. 高电压技术, 2021, 47(08): 2730-2742. (EI检索)
[38] 黄云辉*. 弱电网下风机并网变流器直流电压稳定性机理分析与研究[J], 高电压技术, 2017, 43(9):3127-3136. (EI检索)
[39] 黄云辉*, 周翩, 王龙飞. 弱电网下基于矢量控制的并网变换器功率控制稳定性[J]. 电力系统自动化, 2016, 40(14): 93-99.(EI检索)
[40] Yunhui Huang*, J. Tang, G. Zhu, X. Li, H. Tang, and Y. Li, Research on DC-link voltage stabiliser for voltage source converter as connected to weak grid [J], The Journal of Engineering, 2017, 2017(13): 2168–2172.(EI检索)
[41] Yunhui Huang*, A. Tang, B. Xiong, Y. Huang, H. Tang, and Y. Li, Modeling of Multi VSCs in DC-Link Voltage Control Timescale for Small Signal Stability Analysis [J], The Journal of Engineering, 2017, 2017(13): 2057–2061.(EI检索)
[42] 黄云辉*, 连接弱电网的并网变换器直流电压时间尺度稳定器的设计与分析[J]. 电工技术学报, 2018, 已录取.(EI检索)
[43] Ding Wang, Yangwu Shen, Jian Zuo, Min Xu, Wei Cao, Ming Yi, Yunhui Huang, "Voltage/Reactive Power Coordination Control Between Energy Storage Power Station and Clean Energy Plant Connected to AC/DC Hybrid System," 2021 IEEE 4th International Electrical and Energy Conference (CIEEC), 2021, pp. 1-5. (EI检索)
[44] M. Yi, Y. Huang and D. Zhu, "Research on Subsynchronous Oscillation of Photovoltaic and Battery Storage Systems Integrated to Weak Grid," 2020 4th International Conference on HVDC (HVDC), 2020, pp. 282-286.(EI检索)
[45] Chuangxin Fang, Ying Liu, Zhiping Hu, Lan Ai, Ming Yi, Dang Zhu, Yunhui Huang. "Stability Analysis of Photovoltaic and Battery Energy Storage Systems Integrated to Weak Grid," 2020 IEEE 3rd International Conference on Electronics Technology (ICET), 2020, pp. 480-484.(EI检索)
[46] Zhaohui Kan, Zilong Li, Shuaixuan Li, Tong Zhang, Dang Zhu, Ming Yi, Yunhui Huang. "Research on Grid-Connected/Islanded Control Strategy of PV and Battery Storage Systems as Emergency Power Supply of Pumping Storage Power Station," 2020 IEEE 3rd International Conference on Electronics Technology (ICET), 2020, pp. 457-462.(EI检索)
[47] Y. Huang, C. Tang, L. Huang, H. Yu, S. Zhang and H. Chen, Synchronization Control Stability Analysis of Power Converters with High Renewable Energy Penetration," 2019 IEEE Sustainable Power and Energy Conference (iSPEC), Beijing, China, 2019, pp. 1264-1267.(EI检索)
[48] H. Chen, Y. Huang, S. Zhang, H. Yu, C. Tang and L. Huang, "Research on Coordination Planning of Reliability and Economy of Distribution Network with PV Energy Integration," 2019 IEEE Sustainable Power and Energy Conference (iSPEC), Beijing, China, 2019, pp. 1268-1272.(EI检索)
[49] J. Tang, B. Xiong, Y. Huang, C. Yuan and G. Su, "Optimal configuration of energy storage system based on frequency hierarchical control in ship power system with solar photovoltaic plant," in The Journal of Engineering, vol. 2017, no. 13, pp. 1511-1514, 2017.(EI检索)
[50] Zirui Wang, Binyu Xiong, Jinrui Tang, Yang Li, Yunhui Huang, "Multi-parameter Optimization Strategy for Vanadium Redox Flow Battery Operation Based on Genetic Algorithm," 2019 IEEE 10th International Symposium on Power Electronics for Distributed Generation Systems (PEDG), Xi'an, China, 2019, pp. 717-721.(EI检索)
[51] Lei Dai, Bin Ye, Xuli Wang, Chenxu Yin, Feng Zhao, Congwei Jiang, Yunhui Huang, "Research on Optimization of Active Distribution Network Frame with Improved Particle Swarm Optimization Algorithm," 2019 IEEE 2nd International Conference on Electronics Technology (ICET), Chengdu, China, 2019, pp. 487-493.(EI检索)
[52] J. Tang, D. Cai, C. Yuan, Y. Qiu, X. Deng and Y. Huang, "Optimal configuration of battery energy storage systems using for rooftop residential photovoltaic to improve voltage profile of distributed network," in The Journal of Engineering, vol. 2019, no. 16, pp. 728-732, 3 2019.(EI检索)
[53] 朱当, 黄云辉, 陈后全, 王栋, 邓翔天, 朱国荣. 弱电网下双馈风机多机系统直流电压控制时间尺度的建模与稳定性分析[J]. 智慧电力, 2021, 49(04): 21-29.
[54] 易铭,黄云辉,朱当,王栋,朱国荣.基于弱电网的光伏储能系统小干扰稳定性分析[J].智慧电力,2021,49(02):69-75.
[55] 方创新,黄云辉.基于光伏储能系统的抽水蓄能电站备用电源的设计和研究[J].水电与新能源,2020,34(12):23-27..
[56] 陈后全,张思东,喻恒凝,唐超,黄力,黄云辉.考虑缺电损失评价的主动配电网网架规划研究[J].电气应用,2020,39(07):24-30.
[57] 喻恒凝,黄力,张思东,陈后全,唐超,黄云辉.分布式光伏和电动汽车接入对配电网网损和电压偏移影响的分析研究[J].智慧电力,2020,48(01):28-34.
[58] 张思东,陈后全,唐超,喻恒凝,黄力,黄云辉.基于改进粒子群算法的主动配电网网架优化研究[J].电气应用,2020,39(01):67-73.
[59] 黄力,喻恒凝,张思东,陈后全,唐超,黄云辉.分布式光伏和电动汽车接入对配电网谐波影响的分析[J].通信电源技术,2019,36(11):15-18.
[60] 喻恒凝,张思东,陈后全,黄力,唐超,黄云辉.分布式光伏与电动汽车接入某市配电网的负荷特性分析与对策[J].电测与仪表,2020,57(20):98-105.
申请发明专利10余项
[1] 武汉理工大学.一种多尺度自适应协同的构网型储能调频控制系统及方法:202510513109.3[P].2025-07-25.
[2] 武汉理工大学,南方电网科学研究院有限责任公司.一种风电场和储能电站有功频率协调控制方法及系统:202211100986.0[P].2025-07-01.
[3] 武汉理工大学.一种风电场的调频排序及优化控制方法: 202410807307.6[P]. 2024-10-29.
[4] 武汉理工大学.基于虚拟导纳的构网型变流器功率振荡抑制方法及装置: 202410160770.6[P].2024-07-09.
[5] 武汉理工大学.一种跟网型与构网型变流器有功协调优化控制方法及系统: 202410002026.3[P].2024-05-28.
[6] 武汉理工大学.一种构网型储能电站定容选址优化配置方法及系统: 202410010304.X[P].2024-05-24.
[7] 武汉理工大学.基于幅相交叉补偿的构网型变流器稳定性优化方法及装置: 202311529086.2[P]. 2024-03-22.
[8] 武汉理工大学.一种构网型直驱风机的宽频振荡抑制方法及系统: 202311764961.5[P].2024-03-19.
[9] 武汉理工大学.基于虚拟导纳的构网型变流器功率振荡抑制方法及装置: 202410160770.6[P].2024-03-15.
[10] 武汉理工大学.基于非支配邻域免疫算法的新能源场站定容选址优化方法: 202311380256.5[P].2023-12-26.
[11] 武汉理工大学.一种基于频率补偿的构网型变流器次同步振荡抑制系统: 202311047591.3[P].2023-12-08.
[12] 武汉理工大学.一种多功能融合的新能源电场综合能量管理系统: 202310479965.2[P].2023-07-25.
[13] 武汉理工大学.基于鸟群算法的储能与新能源场站电压控制方法和系统: 202310331369.X[P].2023-07-04.
[1] 2026年获电力系统自动化期刊年度优秀论文三等奖
[2] 2025年获中国能源研究会能源创新奖一等奖
[3] 2024年获中国电源学会科技进步奖二等奖
[4] 2024年获SPEED优秀论文奖
[5] 2024年获CIEEC最佳论文奖
[6] 2024年获高电压技术期刊年度优秀论文奖
[7] 2021年国网新源公司科学技术进步奖三等奖
其他:
毕业生去向:
1. 国家电网、南方电网、电力设计院、中国电信、发电集团等大型电力国企;
2. 中国物理工程研究院等事业单位;
3. 禾望电气等大型新能源设备制造企业;
4. 继续攻读博士学位。
