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Maximum power tracking of a grid-connected wind-driven Brushless Doubly-Fed Reluctance Generator using scalar control

机译:使用标量控制的并网风力驱动无刷双馈磁阻发电机的最大功率跟踪

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This paper presents a scalar volt per hertz (v/f) control technique for maximum power tracking of a grid-connected wind-driven Brushless Doubly-Fed Reluctance Generator (BDFRG). The proposed generator has two stator windings namely; power winding, directly connected to the grid, and control winding, connected to the grid through a bi-directional converter. The presented control technique is based on the abc-axis and dq-axis dynamic model of BDFRG. A detailed abc-axis and dq-axis dynamic model, by which the dynamic behaviour of the BDFRG can be successfully predicted under different operating conditions, is presented. In addition, a soft starting method is suggested to avoid the over-current of the bi-directional converter. The presented simulation results ensure the effectiveness of the proposed control strategy for maximum wind-power extraction under wind-speed variations.
机译:本文提出了一种标量伏/赫兹(v / f)控制技术,用于跟踪并网风驱动的无刷双馈磁阻发电机(BDFRG)的最大功率。建议的发电机有两个定子绕组,分别是:直接连接到电网的电源绕组和通过双向转换器连接到电网的控制绕组。提出的控制技术基于BDFRG的abc轴和dq轴动态模型。提出了详细的abc轴和dq轴动力学模型,通过该模型可以成功预测BDFRG在不同工作条件下的动力学行为。另外,建议采用一种软启动方法来避免双向转换器的过电流。给出的仿真结果确保了所提出的控制策略在风速变化下最大风能提取的有效性。

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