期刊论文 [1] Weiyu Bao, Lei Ding, Yong Cheol Kang, Long Sun. Closed-Loop Synthetic Inertia Control for Wind Turbine Generators in Association with Slightly Over-Speeded Deloading Operation[J]. IEEE Transactions on Power Systems, in press. (SCI收录,影响因子7.326) [2] Weiyu Bao, Qiuwei Wu*, Lei Ding*, Sheng Huang, Vladimir Terzija. A Hierarchical Inertial Control Scheme for Multiple Wind Farms with BESSs Based on ADMM[J]. IEEE Transactions on Sustainable Energy, 2021, 12(2), 751-760. (SCI收录,影响因子8.310) [3] Ruiming Wang, Shiyao Qin, Weiyu Bao*, Anxiang Hou, You Ying; Lei Ding. Configuration and Control Strategy for an Integrated System of Wind Turbine Generator and Supercapacitor to Provide Frequency Support[J]. International Journal of Electrical Power and Energy Systems, 2023, accepted. (SCI收录,影响因子5.659) [4] Weiyu Bao, Lei Ding*, Zhifan Liu, Guofang Zhu, Mostafa Kheshti, Qiuwei Wu, Vladimir Terzija. Analytically derived fixed termination time for stepwise inertial control of wind turbines—Part I: Analytical derivation[J]. International Journal of Electrical Power & Energy Systems, 2020, 121. (SCI收录,影响因子5.659) [5] Yichen Guo, Weiyu Bao, Lei Ding*, Zhifan Liu, Mostafa Kheshti, Qiuwei Wu, Vladimir Terzija. Analytically derived fixed termination time for stepwise inertial control of wind turbines—Part II: Application strategy[J]. International Journal of Electrical Power & Energy Systems, 2020, 121. (SCI收录,影响因子5.659) [6] Weiyu Bao, Qiuwei Wu*, Lei Ding, Sheng Huang, Fei Teng, Vladimir Terzija. Synthetic Inertial Control of Wind Farm with BESS Based on Model Predictive Control[J]. IET Renewable Power Generation, 2020, 14(13), 2447-2455. (SCI收录,影响因子3.034) [7] Sheng Huang, Qiuwei Wu*, Weiyu Bao, Nikos D. Hatziargyriou, Lei Ding, Fei Rong. Hierarchical Optimal Control for Synthetic Inertial Response of Wind Farm Based on ADMM[J]. IEEE Transactions on Sustainable Energy, 2020, 12(1), 25-35. (SCI收录,影响因子8.310) [8] Mostafa Kheshti, Lei Ding*, Weiyu Bao, Minghui Yin, Qiuwei Wu, Vladimir Terzija. Toward Intelligent Inertial Frequency Participation of Wind Farms for the Grid Frequency Control[J], IEEE Transactions on Industrial Informatics, 2020, 16(11), 6772-6786. (SCI收录,影响因子11.648) 发明专利 [1] 一种风储一体化系统参与电网系统调频的控制方法及系统, CN116111613B,2023年6月 [2] 风电机组协同调频最优退出时间的确定方法,CN106451548B,2019年1月 [3] 风储协调的直驱风电机组控制方法及系统, CN114301103B, 2022年6月 [4] 基于雷达前馈控制的风电调频载荷优化控制方法及系统, CN115370537B, 2023年2月 [5] 一种电网频率扰动过程风储协调控制方法及系统, CN113224774B, 2022年7月 [6] 风储联合系统运行控制方法及控制系统, CN113178897B, 2023年6月 [7] 一种风电机组与储能协调调频控制方法及系统, CN113162073B, 2022年11月
|