以下为近五年发表的主要学术论文:
[1] Song Dandan, Yin Minghui, Chen Zaiyu, Zhou Lianjun, Zou Yun. Maximum power point tracking control of wind turbines based on speed hysteresis loop to reduce drive-train loads[J]. Electric Power Systems Research, 2024, 238: 111110.
[2] Guo Liansong, Chen Zaiyu, Yin Minghui, Cai Chenxiao, Zou Yun. Maximum power point tracking control of wind turbine generators based on high-order torque curve[J/OL ]. Journal of Modern Power Systems and Clean Energy, 2024.
[3] Gu Wei, Chen Zaiyu, Li Qun, Yin Minghui, Li Qiang, Zou Yun. Torque limit-based inertial control method based on delayed support for primary frequency control of wind turbines[J]. Journal of Modern Power Systems and Clean Energy, 2024, 12(2): 561-570.
[4] Huo Yuchong, Xu Chang, Li Qun, Li Qiang, Yin Minghui. Maximizing wind farm production through pitch control using graph neural networks and hybrid learning methods[J]. IET Renewable Power Generation, 2024, 18(15): 3301-3316.
[5] Huo Yuchong, Chen Zaiyu, Li Qun, Li Qiang, Yin Minghui. Graph neural network based column generation for energy management in networked microgrid[J]. Journal of Modern Power Systems and Clean Energy, 2024, 12(5): 1506-1519.
[6] Guo Liansong, Yin Minghui, Cai Chenxiao, Xie Yunyun, Zou Yun. Optimal decreased torque gain control for maximizing wind energy extraction under varying wind speed[J]. Journal of Modern Power Systems and Clean Energy, 2023, 11(3): 853-862.
[7] Xu Chang, Yin Minghui, Li Qun, Huo Yuchong, Li Qiang, Zou Yun. Wind farm power maximization based on analytical sensitivity model considering wake effect[J]. Electric Power Systems Research, 2023, 224: 109734.
[8] Zhou Lianjun, Yin Minghui, Sun Xuekun, Song Dandan. Maximum power point tracking control of wind turbines based on equivalent sinusoidal wind[J]. Electric Power Systems Research, 2023, 223: 109534.
[9] Zhang Xiaolian, Lin Baocong, Yin Minghui, Hao Sipeng, Zhang Chaohai, Zuo Tengjun. A novel frequency control method for smart buildings with wind power system integration considering turbulence characteristics[J]. IEEE Transactions on Industry Applications, 2023, 59(1): 15-25.
[10] Gu Huimin, Chen Zaiyu, Li Qun, Yin Minghui, Huo Yuchong, Zou Yun. Active power control of wind turbine generators considering equilibrium point optimization under passive rotor speed variation mode[J]. IEEE Transactions on Sustainable Energy, 2023, 14(4): 2327-2337.
[11] Li Peishuai, Shen Jiawei, Wu Zaijun, Yin Minghui, Dong Yanhao, Han Jing. Optimal real-time Voltage/Var control for distribution network: Droop-control based multi-agent deep reinforcement learning[J]. International Journal of Electrical Power & Energy Systems, 2023, 153: 109370.
[12] Bu Jing, Li Qun, Li Qiang, Chen Zaiyu, Huo Yuchong, Yin Minghui. Inertia compensation for wind turbine emulator based on anticipation deviation suppression[J]. Electric Power Systems Research, 2023, 224: 109751.
[13] Gu Wei, Yin Minghui, Chen Zaiyu, Zou yun. Active power control of wind turbine generators based on the maximum disturbance range of nonpitch regulation[J]. IEEE Transactions on Sustainable Energy, 2022, 13(1): 170-181.
[14] Zhang Zhengyang, Yin Minghui, Chen Zaiyu, Gu Wei, Zou Yun. Rotor speed recovery strategy for inertial response control of wind turbine generators with consideration of turbulent wind[J/OL]. CSEE Journal of Power and Energy Systems, 2022.
[15] Xia Yaping, Li Ruiyu, Yin Minghui, Zouyun. A quantitative measure of the degree of output controllability for output regulation control systems: Concept, approach, and applications[J]. Journal of Vibration and Control, 2022, 28(19-20): 2803-2815.
[16] Kheshti Mostafa, Lin Shuyue, Zhao Xiaowei, Ding Lei, Yin Minghui, Terzija Vladimir. Gaussian distribution-based inertial control of wind turbine generators for fast frequency response in low inertia systems[J]. IEEE Transactions on Sustainable Energy, 2022, 13(3): 1641-1653.
[17] Xie Yunun, Li Dezheng, Xu Yan, Wu Wiuwei, Yin Minghui. A MILP-based restoration planning method for generator start-up considering flexible re-energizing times of transmission lines[J]. International Journal of Electrical Power & Energy Systems, 2021, 124: 106357.
[18] Liao Kai, Xu Yan, Yin Minghui, Chen Zaiyu. A virtual filter approach for wind energy conversion systems for mitigating power system frequency fluctuations[J]. IEEE Transactions on Sustainable Energy, 2020, 11(3): 1268-1277.
[19] Kheshti Mostafa, Ding Lei, Bao Weiyu, Yin Minghui, Wu Qiuwei, Terzija Vladimir. Toward intelligent inertial frequency participation of wind farms for the grid frequency control[J]. IEEE Transactions on Industrial Informatics, 2020, 16(11): 6772-6786.
[20] 李群, 殷明慧, 刘昆龙, 陈载宇, 李强, 邹云. 面向构网永磁风电机组惯量支撑的物理转子绑定方法[J/OL]. 电力系统自动化, 1-16.
[21] 李阳, 李群, 陈载宇, 殷明慧, 邹云. 面向电网最大频率偏差的风电机组短时频率支撑最优策略与机理[J]. 中国电机工程学报, 2024, 44(3): 1020-1035.
[22] 张正阳, 殷明慧, 李阳, 陈载宇, 李强, 邹云. 考虑机组稳定约束的风机一次调频控制策略[J]. 中国电机工程学报, 2023, 43(4): 1471-1481.
[23] 顾伟, 陈载宇, 殷明慧, 李群, 李强, 邹云. 考虑不变桨风速范围的风电机组有功功率控制[J]. 电力系统自动化, 2023, 47(3):40-48.
[24] 周连俊, 李群, 殷明慧, 杨炯明, 邹云. 面向风电机组最大功率点跟踪的转矩曲线增益动态优化方法[J]. 电工技术学报, 2023, 38(13): 3447-3458.
[25] 殷明慧, 顾伟, 陈载宇, 邹云. 面向风电机组有功功率控制的风轮变速运行模式比较研究[J]. 中国电机工程学报, 2022, 42(12): 4419-4430.
[26] 陈载宇, 李阳, 殷明慧, 顾伟峰, 刘建坤, 邹云. 基于参考输入优化的变速风电机组最大化风能捕获方法[J]. 控制理论与应用, 2022, 39(7): 1219-1228.
[27] 张小莲, 石春晖, 郝思鹏, 殷明慧, 张俊芳, 陈冲. 基于动态一致性算法的微电网无功功率分布式二级控制策略[J]. 可再生能源, 2022, 40(3): 368-376.
[28] 谢云云, 严欣腾, 桑梓, 袁晓舒, 殷明慧, 邹云. 面向交直流混联系统的虚假数据注入攻击方法[J]. 电力工程技术, 2022, 41(1): 165-172.
[29] 周连俊, 殷明慧, 杨炯明, 邹云, 张刘冬. 考虑变化湍流风速条件的风电机组改进自适应转矩控制[J]. 电力系统自动化, 2021, 45(1): 184-191.
[30] 沈珺, 柳伟, 李虎成, 李娜, 温镇, 殷明慧. 基于强化学习的多微电网分布式二次优化控制[J]. 电力系统自动化, 2020, 44(5): 198-206.
以下为近五年授权的主要发明专利:
[1] 殷明慧, 盛天情, 李群, 李强, 徐胜元, 卜京, 周连俊, 陈载宇, 汪成根, 韩华春, 邹云. 基于转动惯量补偿策略的风电机组试验台失稳辨识方法[P]. ZL202211002178.0, 2024-11-29.
[2] 殷明慧, 罗森华, 陈载宇, 李群, 张刘冬, 李强, 吉大鹏, 夏士兵, 孙蓉, 汪成根, 刘建坤, 朱冉, 周连俊, 卜京, 邹云, 谢云云. 一种基于执行依赖启发式动态规划的风电机组变下垂控制方法[P]. ZL202110787678.9, 2024-06-07.
[3] 殷明慧, 顾伟, 李群, 陈载宇, 李强, 刘建坤, 张刘冬, 卜京, 周连俊, 邹云, 汪成根. 考虑不变桨风速范围的风电机组有功功率控制方法及系统[P]. ZL202111543163.0, 2024-02-13.
[4] 殷明慧, 周连俊, 魏超, 陈载宇, 徐胜元, 邹云, 卜京, 瞿佳刘, 彭云, 杨炯明, 蔡晨晓, 谢云云. 综合收缩跟踪区间和减小转矩增益的风机转矩曲线法[P]. ZL202010898624.5, 2023-03-31.
[5] 殷明慧, 卜京, 顾伟, 陈载宇, 周连俊, 张刘冬, 杨炯明, 汪成根, 邹云, 孙蓉, 刘建坤, 李强, 彭云. 基于最大不变桨风速范围指标的风机有功功率控制方法[P]. ZL202011535198.5, 2023-01-20.
[6] 殷明慧, 沈烨, 张节潭, 李静怡, 杨军, 李延和, 宋晓芳, 谢东亮, 金慧, 胡珊珊, 向真, 卜京, 邹云. 考虑风电功率波动和切机切负荷干扰下一次调频的调速器参数优化方法[P]. ZL201910459504.2, 2022-10-21.
[7] 殷明慧, 向真, 顾伟, 陈载宇, 周连俊, 卜京, 邹云, 谢云云, 蔡晨晓. 一种考虑延迟支撑的风电机组一次调频控制策略[P]. ZL202110561780.7, 2022-09-20.
[8] 殷明慧, 王静波, 陈思瑾, 张刘冬, 汪成根, 吉大鹏, 孙蓉, 李强, 夏士兵, 刘建坤, 朱冉, 陈载宇, 卜京, 邹云, 谢云云. 限制转速恢复阶段功率变化率的风电机组限功率控制方法[P]. ZL202010785228.1, 2022-09-20.
[9] 殷明慧, 高一帆, 陈载宇, 邹云, 卜京, 王静波, 葛嵩林, 徐畅, 李阳. 基于运行攻角偏差修正的低风速风力机叶片气动设计方法[P]. ZL202010055001.1, 2022-09-20.
[10] 殷明慧, 洪婷, 陈载宇, 周影, 邹云, 卜京, 翟佳刘, 王静波, 谢云云. 考虑风速变化的模糊变参数虚拟惯性控制方法[P]. ZL201910985347.9, 2022-09-13.
[11] 殷明慧, 葛嵩林, 陈载宇, 瞿佳刘, 邹云, 卜京, 李志翔, 徐畅, 罗森华, 谢云云. 基于工业变频器实现的主动式能量回馈型负载及控制方法[P]. ZL201910962979.3, 2022-09-13.
[12] 殷明慧, 陈载宇, 王静波, 周连俊, 张刘冬, 孙蓉, 李强, 周前, 汪成根, 刘建坤, 卜京, 邹云. 基于风机和同步机协调配合的电网频率控制方法[P]. ZL202110572948.4, 2022-09-09.
[13] 殷明慧, 张欢, 周连俊, 陈载宇, 彭云, 杨炯明, 卜京, 邹云, 顾伟, 徐畅, 李阳. 基于转矩增益系数优化的风电机组最大功率点跟踪控制方法[P]. ZL202010205696.7, 2022-03-22.
[14] 殷明慧, 陈载宇, 张正阳, 卜京, 周连俊, 邹云. 考虑湍流风速对转速恢复影响的风机惯性响应控制方法及系统[P]. ZL202011504391.2, 2022-03-18.
[15] 殷明慧, 金慧, 高一帆, 杨晶, 范颖, 谢云云, 卜京, 邹云. 一种风电场参与自动发电控制的有功分配方法[P]. ZL201810422066.8, 2021-07-06.
[16] 殷明慧, 沈力, 杨志强, 李政轩, 高一帆, 李玉龙, 卜京, 谢云云, 邹云. 一种变速风机叶片的多工况气动优化的改进方法[P]. ZL201710483684.9, 2021-01-15.
[17] 殷明慧, 李冬运, 顾伟, 瞿佳刘, 李群, 刘建坤, 周前, 陈兵, 汪成根, 卜京, 谢云云, 邹云, 陈哲, 张宁宇, 卫鹏. 基于斜线平滑功率控制的风机变桨优化方法[P]. ZL201810417972.9, 2020-10-02.
[18] 殷明慧, 李冬运, 陈思瑾, 张欢, 李群, 刘建坤, 周前, 陈兵, 汪成根, 卜京, 谢云云, 邹云, 陈哲, 张宁宇, 卫鹏. 基于限转速平滑功率控制的风机变桨优化方法[P]. ZL201810417781.2, 2020-09-11.
[19] 殷明慧, 周影, 金慧, 瞿佳刘, 李群, 刘建坤, 周前, 陈兵, 汪成根, 卜京, 谢云云, 邹云, 陈哲, 张宁宇, 卫鹏. 基于风轮动能平滑功率控制的风机变桨优化方法[P]. ZL201810417856.7, 2020-07-31.
[20] 殷明慧, 陈小阳, 杨志强, 沈力, 李政轩, 李玉龙, 卜京, 谢云云, 邹云, 姚娟. 考虑设计叶尖速比风轮静、动态影响的风力机气动设计方法[P]. ZL201611050056.3, 2020-07-31.