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Improved grid synchronization control of doubly fed induction generator under unbalanced grid voltage

机译:电网电压不平衡时双馈感应发电机的改进电网同步控制

摘要

An improved grid synchronization control scheme of the wind energy conversion system based on the doubly fed induction generator (DFIG) under unbalanced grid voltage is proposed in this paper. In both the positive and negative sequence models, respectively, the degrees of relevancy among rotor voltages, rotor currents, and stator voltages are calculated using the relative gain array (RGA) methodology. According to the analysis results of RGA, the main controller is designed to control positive sequence stator voltages directly with positive sequence rotor voltages, and the auxiliary controller is designed to control negative sequence stator voltages directly with negative sequence rotor voltages. Hence, the rotor current control loops are eliminated, which simplifies the structure of the controller. Simulation and hardware experimental results validate that the improved control scheme effectively controls stator voltages of the DFIG to accurately follow unbalanced grid voltage and, hence, avoids current, torque, and power impacts to both the DFIG and the grid at the time of connecting.
机译:提出了一种基于双馈感应发电机(DFIG)的不平衡电网电压下风能转换系统的改进的电网同步控制方案。在正序和负序模型中,分别使用相对增益阵列(RGA)方法计算转子电压,转子电流和定子电压之间的相关度。根据RGA的分析结果,主控制器设计成直接用正序转子电压控制正序定子电压,辅助控制器设计成直接用负序转子电压控制负序定子电压。因此,消除了转子电流控制回路,从而简化了控制器的结构。仿真和硬件实验结果证明,改进的控制方案有效地控制了DFIG的定子电压,以准确地跟随不平衡的电网电压,因此避免了连接时对DFIG和电网的电流,转矩和功率的影响。

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