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An Improved Grid Synchronization Control of Doubly-Fed Induction Generator

机译:双馈感应发电机的改进电网同步控制

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The dynamic performance of Doubly-Fed Induction Generator (DFIG) before and after connection is analyzed based on corresponding mathematical models and transfer functions in decoupled vector control. The parameter tuning methods of rotor current regulator before and after connection are given. To reach same dynamic performance the parameters should take different values and be switched before and after connection. However on one hand the closing moment of stator contactor is difficult to get as the feedback signal is usually twenty millisecond delay or so. The delay in parameter switching will affect rotor current and torque dynamics after connection. On the other hand parameter switching is troublesome. Hence a synchronization control strategy without parameter switching is proposed and analyzed in detail, which has linear rising exciting current to avoid current overshooting. The dynamic performance of the proposed strategy is analyzed in frequency domain and implemented on a DFIG experimental platform subsequently. The proposed synchronization strategy in the paper is validated by experimental results.
机译:在解耦矢量控制中,基于相应的数学模型和传递函数,分析了双馈感应发电机(DFIG)在连接前后的动态性能。给出了连接前后转子电流调节器的参数整定方法。为了达到相同的动态性能,参数应采用不同的值,并在连接之前和之后进行切换。然而,一方面,由于反馈信号通常延迟二十毫秒左右,因此很难获得定子接触器的闭合力矩。连接后,参数切换的延迟将影响转子电流和转矩动态。另一方面,参数切换很麻烦。因此,提出并详细分析了一种无需参数切换的同步控制策略,该策略具有线性上升的励磁电流,以避免电流过冲。该策略的动态性能在频域上进行了分析,并随后在DFIG实验平台上实现。实验结果验证了本文提出的同步策略。

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