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Wind turbine control strategy enabling mechanical stress reduction based on dynamic model including blade oscillation effects

机译:风力发电机控制策略可基于包括叶片振动效应在内的动态模型降低机械应力

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摘要

The paper presents a coupled electrical aerodynamic model for a three blade wind-turbine dynamic analysis. The model is based on a blade element representation of the aerodynamic load part combined with an aeroelastic beam element for the dynamic analysis of a real rotor blade, including top tower acceleration. The model involves reduced computation time enabling to be applied in control system hardware. Such an analysis is very promising for obtaining controllers involving compromises among contradictory targets such as energy capture maximization and mechanical stresses reduction in the aerodynamic part.
机译:本文提出了一种用于三叶片风轮机动力分析的耦合空气动力学模型。该模型基于气动载荷部件的叶片元素表示与气动弹性梁元素相结合,用于对实际转子叶片进行动力分析,包括顶部塔架加速度。该模型涉及减少的计算时间,可应用于控制系统硬件。对于获得涉及矛盾目标之间折衷的控制器(例如能量捕获最大化和空气动力学部件中的机械应力降低)的这种分析非常有希望。

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  • 来源
    《Materials science forum》 |2012年第2012期|p.293-298|共6页
  • 作者单位

    Laboratory of Electrical Machines and Power Electronics Electric Power Division, Department of Electrical & Computer Engineering National Technical University of Athens 9, Iroon Polytechneiou Street, 15780 Athens, Greece;

    Laboratory of Electrical Machines and Power Electronics Electric Power Division, Department of Electrical & Computer Engineering National Technical University of Athens 9, Iroon Polytechneiou Street, 15780 Athens, Greece;

    Laboratory of Electrical Machines and Power Electronics Electric Power Division, Department of Electrical & Computer Engineering National Technical University of Athens 9, Iroon Polytechneiou Street, 15780 Athens, Greece;

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