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GENERATOR CONTROL METHODS FOR ACTIVE DAMPING OF OSCILLATIONS IN WIND ENERGY CONVERTERS

机译:风能换能器主动减振的发电机控制方法

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With the increasing nominal power of wind energy converters, an optimized management, a higher level of efficiency and reduced costs are needed. In search of suitable generator systems for wind turbines in the MW class, the permanent-magnet synchronous machine as a generator moves to the focus of current discussions. The Rotor and its blades are able to oscillate due to various dynamic loads a wind energy converter is exposed. In wind energy converters in the Multi MW-class the natural frequencies of the blades have the same range as the naturals of the drive train. Thus blades are no longer isolated from the generator and inverter system to consider in terms of their dynamics, but must be embedded in the overall structure of the energy conversion train. This paper deals with the different types of rotor blade oscillations and its influence to the drive train as well as the possibility to influence the oscillations using a new control strategy for the drive train.
机译:随着风能转换器标称功率的增加,需要优化的管理,更高的效率水平和降低的成本。为了寻找适用于MW级风力涡轮机的发电机系统,永磁同步电机作为发电机成为当前讨论的焦点。转子及其叶片能够由于各种动态负载而摆动,从而暴露出风能转换器。在多兆瓦级的风能变流器中,叶片的固有频率与传动系统的固有频率具有相同的范围。因此,叶片不再与发电机和逆变器系统隔离以进行动力学方面的考虑,而必须嵌入到能量转换系统的整体结构中。本文研究了不同类型的转子叶片振动及其对传动系统的影响,以及使用一种新的传动系统控制策略来影响振动的可能性。

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