Abstract:A maximal power tracking method through controlling torque and power factor of brushless doubly-fed wind power generator to regulate active power is proposed based on direct torque control (DTC), according to the power output characteristics of wind turbine. Considering the complicated relation of internal magnetic fields of brushless doubly-fed generator(BDFG), a novel speed observer is designed by estimating the rotor flux synchronous rotating speed and slip speed to improve the reliability of wind power generation system in harsh wind field environment. Furthermore, the model reference adaptive identification technology is adopted to design control winding flux observer in order to enhance the accuracy of estimated flux within wide speed range and further to improve the operation performance of the DTC system at the low frequency of the control winding. Simulation results prove the validity and feasibility of the proposed novel speed estimation method and DTC scheme.
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. Transactions of China Electrotechnical Society, 2011, 26(12): 20-27.
[1] 陈鸣, 杨刚. 风力发电技术及其发展趋势[J]. 电力学报, 2008, 23(4): 272-275. Chen Ming, Yang Gang. The wind power generation technology and its development prospect[J]. Journal of Electric Power, 2008, 23(4): 272-275. [2] 吴国祥, 黄建明, 陈国呈, 等. 变速恒频双馈风力发电运行综合控制策略[J]. 电机与控制学报, 2008, 12(4): 435-441. Wu Guoxiang, Huang Jianming, Chen Guocheng, et al. A synthetic control strategy for DFIG wind power generation[J]. Electric Machines and Control, 2008, 12(4): 435-441. [3] Li H, Chen Z, Pedersen J K. Optimal power control strategy of maximizing wind energy tracking and conversion for VSCF doubly fed induction generator system[C]. CES/IEEE 5th International Power Electronics and Motion Control Conference, 2006: 1-6. [4] 张志刚, 王毅, 黄守道, 等. 无刷双馈电机在变速恒频风力发电系统中的应用[J]. 电气传动, 2005, 35(4): 61-64. Zhang Zhigang, Wang Yi, Huang Shoudao, et al. The application study for brushless doubly-fed machine in the variable speed constant frequency generation system[J]. Electric Drive, 2005, 35(4): 61-64. [5] Kostyantyn Protsenko, Xu Dewei. 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] 王琦, 陈小虎, 纪延超, 等. 基于双同步坐标的无刷双馈风力发电系统的最大风能追踪控制[J]. 电网技术, 2007, 31(3): 82-87. Wang Qi, Chen Xiaohu, Ji Yanchao, et al. Maximal wind energy tracing control for brushless doubly-fed wind turbine based on dual synchronous coordinates[J]. Power System Technology, 2007, 31(3): 82-87. [7] 黄守道, 王耀南, 王毅, 等. 无刷双馈电机有功和无功功率控制研究[J]. 中国电机工程学报, 2005, 25(4): 87-93. Huang Shoudao, Wang Yaonan, Wang Yi, et al. A study of active and reactive power control for brushless doubly-fed machine[J]. Proceedings of the CSEE, 2005, 25(4): 87-93. [8] 李时杰. ABB变频器在风力发电行业的应用[J]. 变频器世界, 2008(3): 37-40. Li Shijie. Application of ABB inverter in wind power generate electricity industry[J]. The World of Inverters, 2008(3): 37-40. [9] 杜志伟, 赵峰, 田铭兴, 等. 变速恒频风力发电的最大功率捕获控制研究[J]. 电气传动, 2007, 37(3): 7-10. Du Zhiwei, Zhao Feng, Tian Mingxing, et al. Investigation on tracking maximum power point in VSCF wind-power generation system[J]. Electric Drive, 2007, 37(3): 7-10. [10] 王凤翔, 张凤阁. 磁场调制式无刷双馈交流电机[M]. 长春: 吉林大学出版社, 2004. [11] 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. [12] Sarasola I, Poza J, Rodriguez M A, et al. Direct torque control for brushless doubly-fed induction machines[C]. IEEE International Electric Machines & Drives Conference, 2007, 2: 1496-1501.