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Idle Load Proportional Resonant Grid Connection Control for Doubly-fed Wind Power Generation System

机译:闲置负载比例谐振电网连接控制,用于双馈风发发电系统

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The proportional resonant control strategy is proposed to realize the control of the idle load grid connection of the doubly-fed wind power generation system. Based on the mathematical model of doubly-fed induction generator, the stator flux oriented grid connection system of doubly fed wind power generation system is established. With the principle of proportional resonant (PR) controller, the control of the idle load proportional resonance is designed. In this method, the active and reactive current components are transformed in the stationary frame to adjust and to achieve power grid synchronization control of the doubly-fed wind power system. Compared with traditional network synchronization control of DFIG, the proposed scheme reduces the times of rotating coordinates transformation, cancels the feed-forward compensation control influenced by generator parameters. The control algorithm is thus simplified and the robustness of control system is improved. Simulation and experimental results show that the proposed control strategy realizes the network synchronization control of DFIG effectively.
机译:提出了比例谐振控制策略来实现双馈风发发电系统的怠速负载网格连接的控制。基于双馈感应发生器的数学模型,建立了双馈风发发电系统的定子磁通导向网格连接系统。利用比例谐振(PR)控制器的原理,设计了怠速负荷比例谐振的控制。在该方法中,主动和无功电流分量在静止框架中变换以调整和实现双馈风电系统的电网同步控制。与DFIG的传统网络同步控制相比,所提出的方案减少了旋转坐标变换的时间,取消了由发电机参数影响的前馈补偿控制。因此,简化了控制算法,并提高了控制系统的鲁棒性。仿真和实验结果表明,该控制策略有效地实现了DFIG的网络同步控制。

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