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Sliding mode control for a grid-connected wind turbine with asynchronous generator

机译:具有异步发电机的并网风力发电机的滑模控制

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In this paper, a sliding mode control is proposed to control a large wind turbine (3 MW). Sliding mode control is considered more robust than the linear controllers. The complete model of the conversion system of wind energy is established. It includes a wind turbine, a gearbox, a variable speed squirrel cage asynchronous generator, two PWM converters, DC bus circuit and the filter. The side-generator converter is used to generate the maximum power from Wind Turbine Generator. Then, the control strategy, which combines maximum power point tracking and a pitch control, is given. The grid side converter is used to maintain the DC link voltage constant, to achieve unity power factor, and injects the generated power into AC network. The models and control schemes are validated through simulations by using MATLAB/ Simulink environment. The results of simulation show that the proposed control is efficient and gives good performance.
机译:在本文中,提出了一种滑模控制来控制大型风力发电机(3 MW)。滑模控制被认为比线性控制器更健壮。建立了风能转换系统的完整模型。它包括一个风力涡轮机,一个变速箱,一个变速鼠笼式异步发电机,两个PWM转换器,DC总线电路和滤波器。侧面发电机转换器用于从风力发电机产生最大功率。然后,给出了结合了最大功率点跟踪和俯仰控制的控制策略。电网侧转换器用于保持直流母线电压恒定,以达到单位功率因数,并将生成的功率注入交流网络。使用MATLAB / Simulink环境通过仿真对模型和控制方案进行了验证。仿真结果表明,所提出的控制是有效的,并且具有良好的性能。

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