[1] P. Chao, W. Li*, X. Liang, et al. An Analytical Two-Machine Equivalent Method of DFIG-based Wind Power Plants Considering Complete FRT Processes, IEEE Transactions on Power Systems, 2021. Early Access, IF: 6.807, 中科院一区.
[2] M. Zhu, W. Li*, X. Liang. Stepwise voltage drop and transient current control strategies to enhance fault ride-through capability of MMC-HVDC connected DFIG wind farms, IEEE Transactions on Power Systems, 2020. Early Access, IF: 6.807, 中科院一区.
[3] P. Chao, W. Li*, X. Liang, et al. Fault ride-through behaviors correction-based single-unit equivalent method for large Photovoltaic power plants. IEEE Transactions on Sustainable Energy, 2021, 12(1): 715-726, IF: 7.650, 中科院一区.
[4] W. Li, D. Srinivasan, J. Zhang, D. Yang. Preface of progress in solar energy special issue: Grid integration. Solar Energy, 2020, vol.210, p.1-2, IF=4.608, JCR一区.
[5] P. Chao, W. Li*, X. Liang, et al. A comprehensive review on dynamic equivalent modeling of large photovoltaic power plants. Solar Energy, 2020, vol.210, p.87-100, IF=4.608, JCR一区.
[6] W. Li, M. Zhu, P. Chao, et al. Enhanced FRT and post-fault recovery control for MMC-HVDC connected offshore wind farms. IEEE Transactions on Power Systems, 2020, 35(2): 1606-1617, IF: 6.807, 中科院一区.
[7] P. Chao, W. Li*, S. Peng, et al. A unified modeling method of photovoltaic generation systems under balanced and unbalanced voltage dips, IEEE Transactions on Sustainable Energy, 2019, 10 (4): 1764-1774, IF: 7.650, 中科院一区.
[8] W. Li, P. Chao, X. Liang, et al. A practical equivalent method for DFIG wind farms, IEEE Transactions on Sustainable Energy, 2018, 9(2): 610-620, IF: 7.650, 中科院一区.
[9] W. Li, P. Chao, X. Liang, et al. An improved single-machine equivalent method of wind power plants by calibrating power recovery behaviors, IEEE Transactions on Power Systems, 2018, 33(4): 4371-4381, IF: 6.807, 中科院一区
[10] W. Li, P. Chao, X. Liang, et al. Modeling of complete fault ride-through processes for DFIG-based wind turbines, Renewable Energy, 2018.04,119:1001-1014. IF: 5.439, JCR一区.