[1] | Xu L,Wang Y. Dynamic modeling and control of DFIG-based wind turbines under unbalanced network conditions[J]. IEEE Trans.on Power Systems, 2007,22(1):314-323.
|
[2] | Ramos C J,Martins A P,Carvalho A S. Rotor current controller with voltage harmonics compensation for a DFIG operating under unbalanced and distorted stator voltage[C]//33rd Annual Conference of the IEEE Industrial Electronics Society. Taipei, Taiwan,2007:1287-1292.
|
[3] | Milicua A,Piasecki S,Bobrowska M,et al. Coordinated control for grid connected power electronic converters under the presence of voltage dips and harmonics[C]// 13th European Conference on Power Electronics and Applications. Barcelona, Spain,2009:1-10.
|
[4] | Kiani M,Lee W. Effects of voltage unbalance and system harmonics on the performance of doubly fed induction wind generators[J]. IEEE Trans.on Industry Applications, 2010,46(2):562-568.
|
[5] | Hu J,He Y,Wang H. Adaptive rotor current control for wind-turbine driven DFIG using resonant controllers in a rotor rotating reference frame[J]. Journal of Zhejiang University-Science A, 2008,9(2):149-155.
|
[6] | Hu J,He Y. Modeling and enhanced control of DFIG under unbalanced grid voltage conditions[J]. Electric Power Systems Research(EPSR), 2009,79(2):273-281.
|
[7] | Teodorescu R,Blaabjerg F,Liserre M,et al. Proportional-resonant controllers and filters for gridconnected voltage-source converters[J]. IEE Proceedings Electr.Power Appl., 2006,153(5):750-762.
|
[8] | Xu L. Coordinated control of DFIG's rotor and grid side converters during network unbalance[J]. IEEE Trans.on Power Electronics, 2008,23(3):1041-1049.
|
[9] | Ted K A Brekken,Mohan N. Control of a doubly fed induction generator under unbalanced grid voltage conditions[J]. IEEE Trans.on Energy Conversion, 2007,22(1):129-135.
|
[10] | Wangsathitwong S,Sirisumrannukul S,Chatratana S,et al. Symmetrical components-based control technique of doubly fed induction generators under unbalanced voltages for reduction of torque and reactive power pulsations[C]// 7th International Conference on Power Electronics and Drive Systems. Bangkok, Thainland,2007:1325-1330.
|
[11] | Kearney J,Conlon M F. Performance of a variable speed double-fed induction generator wind turbine during network voltage unbalance conditions[C]// Proceedings of the 41st International Universities Power Engineering Conference,Newcastle upon Tyne,UK,2006:36-40.
|
[12] | Hong-Geuk P,Abo-Khalil A G,Dong-Choon L,et al. Torque ripple elimination for doubly-fed induction motors under unbalanced source voltage[C]// 7th International Conference on Power Electronics and Drive Systems. Bangkok, Thainland,2007:1301-1306.
|
[13] | Zhou P,He Y,Sun D. Improved direct power control of a DFIG-based wind turbine during network unbalance[J]. IEEE Trans.on Power Electronics, 2009,24(11):2465-2474.
|
[14] | Seman S,Niiranen J,Arkkio A. Ride-through analysis of doubly fed induction wind-power generator under unsymmetrical network disturbance[J]. IEEE Trans.on Power Systems, 2006,21(4):1782-1789.
|
[15] | Santos-Martin D,Rodriguez-Amenedo J L,Arnalte S. Direct power control applied to doubly fed induction generator under unbalanced grid voltage conditions[J]. IEEE Trans.on Power Electronics, 2008,23(5):2328-2336.
|
[16] | Santos-Martin D,Rodriguez-Amenedo J L,Arnalte S. Providing ride-through capability to a doubly fed induction generator under unbalanced voltage dips[J]. IEEE Trans.on Power Electronics, 2009,24(7):1747-1757.
|
[17] | Abad G,Rodriguez M A,Iwanski G,et al. Direct power control of doubly-fed-induction-generator-based wind turbines under unbalanced grid voltage[J]. IEEE Trans.on Power Electronics, 2010,25(2):442-452.
|
[18] | 贺益康,周鹏. 变速恒频双馈异步风力发电系统低电压穿越技术综述[J]. 电工技术学报, 2009,24(9):140-146. He Y,Zhou P.Overview of the low voltage ride-through technology for variable speed constant frequency doubly fed wind power generation systems [J].Transactions of China Electro-technical Society,2009,24(9)
|
[19] | 周鹏. 双馈异步风力发电系统低电压穿越技术研究[D]. 杭州, 浙江大学,2011. Zhou P.Investigation of low voltage ride-through technique for the doubly-fed induction generator based wind power generation systems[D].Hangzhou:ZhejiangUniversity,2011(in Chinese).
|
[20] | AMEC. National Electricity Rules,Version 39,Sept. 2010.Available at:http://amec.gov.au.,
|
[21] | 向大为,杨顺昌,冉立. 电网对称故障时双馈感应发电机不脱网运行的系统仿真研究[J]. 中国电机工程学报, 2006,26(10):130-135. Xiang Dawei,Yang Shunchang,Ran Li.System simulation of a doubly fed induction generator ride-through control for symmetrical grid fault[J].Proceedings of the CSEE,2006,26(10)
|
[22] | 胡家兵,孙丹,贺益康,等. 电网电压骤降故障下双馈风力发电机建模与控制[J]. 电力系统自动化, 2006,30(8):21-26. Hu Jjiabing,Sun Dan,He Yikang,et al.Modeling and control of DFIG wind energy generation system under grid voltage dip[J].Automation of Electric Power Systems,2006,30(8)
|
[23] | Rajda J,Galbraith A W,Schauder C D. Device,system,and method for providing a low-voltage fault ride-through for a wind generator farm[P]. United States, US 2006/0267560 A1.November 2006.
|
[24] | Yan X,Venkataramanan G,Flannery P S,et al. Voltage-sag tolerance of DFIG wind turbine with a series grid side passive-impedance network[J]. IEEE Trans.on Energy Conversions, 2010,25(4):1048-1056.
|
[25] | Flannery P,Venkataramanan G. Evaluation of voltage sag ride-through of a doubly fed induction generator wind turbine with series grid side converter[C]// 38th IEEE Annual Power Electronics Specialists Conference. Orlando, Florida,2007:17-21.
|
[26] | Flannery P,Venkataramanan G. A fault tolerant doubly fed induction generator wind turbine using a parallel grid side rectifier and series grid side converter[J]. IEEE Trans.on Power Electronics, 2008,23(3):1126-1135.
|
[27] | Singh B,Emmoji V,Singh S N,et al. Performance evaluation of new series connected grid-side converter of doubly-fed induction generator[C]// Joint International Conference on Power System Technology and IEEE Power India Conference. 2008:1-8.,
|
[28] | Liao Y,Li H,Yao J,et al. Operation and control of a grid-connected DFIG-based wind turbine with series grid-side converter during network unbalance[J]. Electric Power Systems Research, 2011,81(1):228-236.
|
[29] | Petersson A. Analysis,modeling and control of doubly-fed induction generators for wind turbines[D]. Goteborg, Sweden:Chalmers University of Technology,2005.
|
[30] | Kelber C,Schumacher W. Active damping of flux oscillations in doubly fed AC machines using dynamic variations of the system?s structure[C]// 9th European Conference on Power Electronics and Applications. Graz, Austria,2001.
|
[31] | Zhan C,Barker C D. Fault ride-through capability investigation of a doubly-fed induction generator with an additional series-connected voltage source converter[C]// The 8th IEE International Conference on AC and DC Power Transmission. Savoy Place, London,2006:79-84.
|
[32] | Wessels C,Gebhardt F,Fuchs F W. Dynamic voltage restorer to allow LVRT for a DFIG wind turbine[C]// IEEE International Symposium on Industrial Electronics. Bari, Italy,2010:803-808.
|
[33] | 胡家兵,贺益康,郭晓明,等. 不平衡电压下双馈异步风力发电系统的建模与控制[J]. 电力系统自动化, 2007,35(11):21-26. Hu Jiabing,He Yikang,Guo Xiaoming,et al.Modeling and control of the DFIG based wind-power generation system under unbalanced grid voltage conditions[J].Automation of Electric Power Systems,2007,35(11)
|
[34] | Hu Jiabing,He Yikang,Nian Heng. Enhanced control of dfig used back-to-back PWM voltage-source converter under unbalanced grid voltage conditions[J]. Journal of Zhejiang University Science A, 2007,8(8):1330-1339.
|
[35] | Hu Jiabing,He Yikang. Reinforced control and operation of DFIG-based wind generation system under unbalanced grid voltage conditions[J]. IEEE Transactions on Energy Conversion, 2009,24(4):905-915.
|
[36] | Hu Jiabing,Nian Heng,Xu Hailiang,et al. Dynamic modeling and improved control of DFIG Under Distorted Grid Voltage Conditions[J]. IEEE Transactions on Energy Conversion, 2011,26(1):163-175.
|
[37] | Xu Hailiang,Hu Jiabing,He Yikang. Operation of wind-turbine-driven DFIG systems under distorted grid voltage conditions:analysisand experimental validations [J]. IEEE Trans.on Power Electronics, 2012,27(5):2354-2366.
|
[38] | Zmood D N,Holmes D G. Stationary frame current regulation of PWM inverters with zero steady-state error [J]. IEEE Trans.on Power Electronics, 2003,18(3):814-822.
|
[39] | Yuan X,Merk W,Stemmler H,et al. Stationary-frame generalized integrators for current control of active power filters with zero steady-state error for current harmonics of concern under unbalanced and distorted operating conditions[J]. IEEE Trans.on Industry Applications, 2002,38(2):523-532.
|
[40] | Hu Jiabing,He Yikang,Xu Lie,et al. Improved control of DFIG systems during network unbalance using PI-R current regulators[J]. IEEE Transactions on Industrial Electronics, 2009,56(2):439-451.
|
[41] | 贺益康,胡家兵,Lie XU徐烈. 并网双馈异步风力发电机运行控制[M]. 北京:中国电力出版社, 2012.He Y,Hu J,Xu L.The operation control of grid-connected doubly fed induction generators [M].Beijing:ChinaElectric Power Press,2012(in Chinese).
|
[42] | Xiang D,Ran L,Tavner P J,et al. Control of a doubly fed induction generator in a wind turbine during grid fault ride-through[J]. IEEE Trans.on Energy Conversion, 2006,21(3):652-662.
|
[43] | 向大为,杨顺昌,冉立. 电网对称故障时双馈感应发电机不脱网运行的励磁控制策略[J]. 中国电机工程学报, 2006,26(3):164-170. Xiang Dawei,Yang Shunchang,Ran Li.Ride-through control strategy of a doubly fed induction generator for symmetrical grid fault [J].Proceedings of the CSEE,2006,26(3)
|
[44] | Lopez J,Gubia E,Sanchis P,et al. Wind turbines based on doubly fed induction generator under asymmetrical voltage dips[J]. IEEE Trans.on Energy Conversion, 2008,23(1):321-330.
|