Research on the Maximum Power Point Tracking of Brushless Doubly-Fed Wind Power Generator with Open Winding Direct Torque Fuzzy Control Strategy
Zhang Fengge1, Zhu Liancheng1,2, Jin Shi1, Yu Siyang1
1. School of Electrical Engineering Shenyang University of Technology Shenyang 110870 China 2. School of Electronic and Information Engineering University of Science and Technology Anshan 114051 China
Abstract:Based on the principle of wind power generator maximum power point tracking (MPPT),combined with the special structure of brushless doubly-fed machine,which does not have brushes and slip rings,and allowing for the adopted double stator magnetic field modulation method,so that the capacity of required converters is smaller,then a novel scheme of direct torque control and fuzzy control inn brushless doubly-fed generator system is proposed,which the control winding is opened and fed with dual two-level converters. The principles of each part,i.e. the maximum power point tracking,the open winding strategy,the direct torque control,and the fuzzy control are all explained in detail. Then the MPPT of brushless doubly-fed wind power generators with the open winding direct torque fuzzy control strategy model,i.e. the control winding is fed with dual two-level SVPWM converters,is built and researched using the Matlab/Simulink software. The excellent performances are obtained by the simulation results. Finally,the correctness and feasibility of the proposed strategy are confirmed by the semi-physical simulation experimental platform,which can provide a good reference to further develop the semi-physical simulation experimental platform and the related control strategies.
张凤阁, 朱连成, 金石, 于思洋. 开绕组无刷双馈风力发电机最大功率点跟踪直接转矩模糊控制研究[J]. 电工技术学报, 2016, 31(15): 43-53.
Zhang Fengge, Zhu Liancheng, Jin Shi, Yu Siyang. Research on the Maximum Power Point Tracking of Brushless Doubly-Fed Wind Power Generator with Open Winding Direct Torque Fuzzy Control Strategy. Transactions of China Electrotechnical Society, 2016, 31(15): 43-53.
[1] Rose J D,Hiskens I A.Challenges of integrating large amounts of wind power[C]//2007 1st Annual IEEE Systems Conference,Hawaii,USA,2007,4:9-12. [2] 刘畅,吴浩,高长征,等.风电消纳能力分析方法的研究[J].电力系统保护与控制,2014,42(4):61-66. LIU Chang,WU Hao,GAO Changzheng,et al.Study on analysis method of accommodated capacity for wind power[J].Power System Protection and Control,2014,42(4):61-66. [3] 董永平,何世恩,刘峻,等.低碳电力视角下的风电消纳问题[J].电力系统保护与控制,2014,42(5):12-16. Dong Yongping,He Shien,Liu Jun,et al.Wind power consumption problem in the view of low carbon power[J].Power System Protection and Control,2014,42(5):12-16. [4] 茅靖峰,吴爱华,吴国庆,等.基于扩张状态观测的永磁直驱风力发电系统MPPT自适应滑模控制[J].电力系统保护与控制,2014,42(18):58-65. Mao Jingfeng,Wu Aihua,Wu Guoqing,et al.Adaptive sliding mode MPPT control for PMSG-based wind energy conversion systems based on extended state observer[J].Power System Protection and Control,2014,42(18):58-65. [5] Protsenko K,Xu D W.Modeling and control of brushless doubly-fed induction generators in wind energy applications[J].IEEE Transactions on Power Electronics,2008,23(3):1191-1197. [6] 郭金东,赵栋利,林资旭,等.兆瓦级变速恒频风力发电机组控制系统[J].中国电机工程学报,2007,27(6):1-6. Guo Jindong,Zhao Dongli,Lin Zixu,et al.Research of the megawatt level variable speed constant frequency wind power unit control system[J].Proceedings of the CSEE,2007,27(6):1-6. [7] Milutin G Jovanovic,Robert E Betz,Jian Yu,et al.Aspects of vector and scalar control of brushless doubly fed reluctance machines[C]//IEEE Intornational Conference on Power Electronics & Drive systems,2001,2:461-467. [8] Wang Fengxiang,Zhang Fengge,Xu Longya.Parameter and performance comparison of doubly fed brushless machine with cage and reluctance rotors[J].IEEE Transactions on Industry Applications,2002,38(5):1237-1243. [9] 张凤阁,王秀平,贾广隆,等.无刷双馈电机复合转子结构参数的优化设计[J].电工技术学报,2014,29(1):77-84. Zhang Fengge,Wang Xiuping,Jia Guanglong,et al.Optimum design for composite rotor structural parameters of brushless doubly fed machines[J].Transactions of China Electrotechnical Society,2014,29(1):77-84. [10]邱鑫,黄文新,卜飞飞,等.内置式永磁同步电机宽转速范围无位置传感器直接转矩控制[J].电工技术学报,2014,29(9):92-99. Qiu Xin,Huang Wenxin,Bu Feifei,et al.Sensorless direct torque control of interior permanent magnet synchronous machines over wide speed range[J].Transactions of China Electrotechnical Society,2014,29(9):92-99. [11]牛峰,李奎,王尧,等.基于占空比调制的永磁同步电机直接转矩控制[J].电工技术学报,2014,29(11):20-29. Niu Feng,Li Kui,Wang Yao,et al.Model predictive direct torque control for permanent magnet synchronous machines based on duty ratio modulation[J].Transactions of China Electrotechnical Society,2014,29(11):20-29. [12]张兴华,姚丹.感应电机直接转矩控制系统的“抗饱和”控制器设计[J].电工技术学报,2014,29(5):181-188. Zhang Xinghua,Yao Dan.Anti-windup speed controller design for direct torque controlled induction motor drives[J].Transactions of China Electrotechnical Society,2014,29(5):181-188. [13]郝振洋,胡育文,沈天珉,等.永磁容错电机的直接转矩控制策略[J].电工技术学报,2014,29(3):180-188. Hao Zhenyang,Hu Yuwen,Shen Tianmin.Director torque control strategy of fault tolerant permanent magnet motors[J].Transactions of China Electrotechnical Society,2014,29(3):180-188. [14]刘栋良,崔言飞,赵晓丹,等.基于反推控制的永磁同步电动机速度的模糊控制[J].电工技术学报,2014,29(11):38-44. Liu Dongliang,Cui Yanfei,Zhao Xiaodan,et al.Fuzzy control of speed of permanent magnet synchronous motor based on backstepping control[J].Transactions of China Electrotechnical Society,2014,29(11):38-44. [15]张凤阁,金石,张武.基于无速度传感器的无刷双馈风力发电机直接转矩控制[J].电工技术学报,2011,26(12):20-27. Zhang Fengge,Jin Shi,Zhang Wu.Direct torque control for brushless doubly-fed wind power generator based on speed sensorless[J].Transactions of China Electrotechnical Society,2011,26(12):20-27. [16]Sun Xikai,Cheng Ming.A novel wind power generation system based on mechanical and electrical variable transmission[J].Proceedings of the CSEE,2012,32(3):49-55. [17]Knight Andrew M,Betz Robert E,Song William K,et al.Brushless doubly-fed reluctance machine rotor design[C]//2012 IEEE Energy Conversion Congress and Exposition (ECCE),2012:2308-2315. [18]Datta R,Ranganathan V T.Variable-speed wind power generation using doubly fed wound rotor induction machine a comparison with alternative schemes[J].IEEE Transactions on Energy Conversion,2002,17(3):414-421. [19]Barati Farhad,McMahon Richard,Shao Shiyi,et al.Generalized vector control for brushless doubly fed machines with nested-loop rotor[J].IEEE Transactions on Industrial Electronics,2013,60(6):2477-2485. [20]Chaal Hamza,Jovanovic Milutin.Toward a generic torque and reactive power controller for doubly fed machines[J].IEEE Transactions on Power Electronics,2012,27(1):113-121. [21]Sarasola Izaskun,Poza Javier,Rodriguez Miguel A,et al.Direct torque control design and experimental evaluation for the brushless doubly fed machine[J].Energy Conversion and Management,2010,52(2):1226-1234. [22]Jin Shi,Zhang Fengge,Wang Xiuping.Speed sensorless direct torque control of brushless doubly-fed generator for wind power generation[C]//2009 International Conference on Applied Superconductivity and Electromagnetic Devices,Chengdu,2009:300-303. [23]Nabae A,Takahashi I,Agaki H.A new neutral-point-clamped PWM inverter[J].IEEE Transactions on Industry Applications,1981,17:518-523. [24]Liu Yan,Wang Xu,Xing Yan,et al.Study on the new SVPWM method for three-level inverter of brushless doubly-fed machine[J].Hydraulic Equipment and Support Systems for Mining,2013,619(8):156-159. [25]Poza J,Oyarbide E,Roye D,et al.Unified reference frame dq model of the brushless doubly-fed machine[J].IEE Proceedings of Electric Power Applications,2006,153(5):726-734. [26]Somani Apurva,Gupta Ranjan K,Mohapatra Krushna K,et al.On the causes of circulating currents in PWM drives with open-end winding AC machines[J].IEEE Transactions on Industrial Electronics,2012,60(9):3670-3678. [27]George David Solomon,Baiju M R.Space vector based random pulse width modulation scheme for a 3-level inverter in open-end winding induction motor configuration[C]//2012 IEEE International Symposium on Industrial Electronics (ISIE),Hangzhou,2012:742-747. [28]Srinivas S,Somasekhar V T.Space vector based PWM switching strategies for a three-level dual inverter fed open-end winding induction motor drive and their comparative evaluation[J].IET Electric Power Applications,2008,2(1):19-31. [29]Jovanovic M G,Betz R E.Power factor control using brushless doubly fed reluctance machines[C]//Conference Record of the 2000 IEEE Industry Applications Conference,Rome,2000,1:523-530. [30]金石.变速恒频无刷双馈风力发电机的直接转矩控制技术研究[D].沈阳:沈阳工业大学,2011.