Model predictive stator current control of doubly fed induction generator during network unbalance
暂无分享,去创建一个
Heng Nian | Dan Sun | Chenwen Cheng | Peng Cheng | H. Nian | Chenwen Cheng | P. Cheng | Dan Sun
[1] Heng Nian,et al. Independent Operation of DFIG-Based WECS Using Resonant Feedback Compensators Under Unbalanced Grid Voltage Conditions , 2015, IEEE Transactions on Power Electronics.
[2] Kai Zhang,et al. Control and Monitoring for Grid-Friendly Wind Turbines: Research Overview and Suggested Approach , 2015, IEEE Transactions on Power Electronics.
[3] Manel Jebali-Ben Ghorbal,et al. Direct Virtual Torque Control for Doubly Fed Induction Generator Grid Connection , 2009, IEEE Transactions on Industrial Electronics.
[4] M. Liserre,et al. Power Electronics Converters for Wind Turbine Systems , 2012, IEEE Transactions on Industry Applications.
[5] Chao Wu,et al. Direct Stator Current Vector Control Strategy of DFIG Without Phase-Locked Loop During Network Unbalance , 2017, IEEE Transactions on Power Electronics.
[6] Heng Nian,et al. Modularized Control Strategy and Performance Analysis of DFIG System Under Unbalanced and Harmonic Grid Voltage , 2015, IEEE Transactions on Power Electronics.
[7] Jiabing Hu,et al. Operation of Wind-Turbine-Driven DFIG Systems Under Distorted Grid Voltage Conditions: Analysis and Experimental Validations , 2012, IEEE Transactions on Power Electronics.
[8] G. Tapia,et al. Modeling and control of a wind turbine driven doubly fed induction generator , 2003 .
[9] Heng Nian,et al. Collaborative Control of DFIG System During Network Unbalance Using Reduced-Order Generalized Integrators , 2015, IEEE Transactions on Energy Conversion.
[10] Dan Sun,et al. Low-Complexity Model Predictive Direct Power Control for DFIG Under Both Balanced and Unbalanced Grid Conditions , 2016, IEEE Transactions on Industrial Electronics.
[11] Dan Sun,et al. Three-Vector-Based Low-Complexity Model Predictive Direct Power Control Strategy for Doubly Fed Induction Generators , 2017, IEEE Transactions on Power Electronics.
[12] Zhe Chen,et al. Dual-Loop Control Strategy for DFIG-Based Wind Turbines Under Grid Voltage Disturbances , 2016, IEEE Transactions on Power Electronics.
[13] David G. Dorrell,et al. Predictive Direct Power Control of Doubly Fed Induction Generators Under Unbalanced Grid Voltage Conditions for Power Quality Improvement , 2015, IEEE Transactions on Sustainable Energy.
[14] J.A. Ferreira,et al. Operation of Grid-Connected DFIG Under Unbalanced Grid Voltage Condition , 2009, IEEE Transactions on Energy Conversion.
[15] Marcelo A. Pérez,et al. Analysis of Finite-Control-Set Model Predictive Current Control With Model Parameter Mismatch in a Three-Phase Inverter , 2016, IEEE Transactions on Industrial Electronics.
[16] Dong-Seok Hyun,et al. An improved stator flux estimation for speed sensorless stator flux orientation control of induction motors , 1998 .
[17] M. Monfared,et al. Design-Oriented Study of Advanced Synchronous Reference Frame Phase-Locked Loops , 2013, IEEE Transactions on Power Electronics.
[18] Jiabing Hu,et al. Modeling and enhanced control of DFIG under unbalanced grid voltage conditions , 2009 .
[19] Davood Arab Khaburi,et al. Robustness Improvement of Predictive Current Control Using Prediction Error Correction for Permanent-Magnet Synchronous Machines , 2016, IEEE Transactions on Industrial Electronics.
[20] Xing Zhang,et al. A Model Predictive Control-Based Common-Mode Voltage Suppression Strategy for Voltage-Source Inverter , 2016, IEEE Transactions on Industrial Electronics.
[21] Lie Xu,et al. Dynamic Modeling and Control of DFIG-Based Wind Turbines Under Unbalanced Network Conditions , 2007, IEEE Transactions on Power Systems.
[22] Pu Liu,et al. Grouping-Sorting-Optimized Model Predictive Control for Modular Multilevel Converter With Reduced Computational Load , 2016, IEEE Transactions on Power Electronics.
[23] Marco Rivera,et al. Model-Based Predictive Rotor Current Control for Grid Synchronization of a DFIG Driven by an Indirect Matrix Converter , 2014, IEEE Journal of Emerging and Selected Topics in Power Electronics.