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Magnitude and frequency control of grid-connected doubly fed induction generator based on synchronised model for wind power generation

机译:基于同步模型的并网双馈感应发电机的幅频控制

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A magnitude and frequency control (MFC) strategy has been proposed for the doubly fed induction generator (DFIG). The proposed MFC makes the DFIG equivalent to a synchronous generator in the power system. The active and reactive powers of the stator depend on the phase and magnitude of the new equivalent 'emf behind the internal transient reactance'. The relationship between the rotor voltage and the 'emf behind the internal transient reactance' is also described. Unlike traditional control strategies such as stator-flux-orientation vector control and FMAC, the MFC method manipulates the magnitude and frequency of the rotor voltage. This simplifies the design of the control system and improves system reliability. Thus, co-ordinate transformations, rotor position detection, and measurements of rotor currents and rotor speeds are not required. Simulation and experiment results obtained from a 30-kW DFIG system are provided to validate the control scheme.
机译:已经提出了用于双馈感应发电机(DFIG)的幅度和频率控制(MFC)策略。所提出的MFC使DFIG等效于电力系统中的同步发电机。定子的有功功率和无功功率取决于新的等效“内部瞬态电抗后面的emf”的相位和大小。还描述了转子电压和“内部瞬态电抗背后的emf”之间的关系。与传统的控制策略(例如定子磁通矢量控制和FMAC)不同,MFC方法可控制转子电压的大小和频率。这简化了控制系统的设计并提高了系统可靠性。因此,不需要坐标变换,转子位置检测以及转子电流和转子速度的测量。提供了从30 kW DFIG系统获得的仿真和实验结果,以验证控制方案。

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    《Renewable Power Generation, IET》 |2010年第3期|p.232-241|共10页
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