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Steady state modeling of doubly fed induction generators for mega watt class wind turbines

机译:兆瓦级风力发电机双馈感应发电机的稳态建模

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Doubly fed induction generators in conjunction with frequency converters allow the economic construction of large wind power plants with variable speed drives and a rated power output of up to several MW. Compared to fixed speed generators, the advantages of this configuration are high energy yields despite changing wind speeds, reduced negative effects on the grid and the possibility of reactive-power control. Furthermore, only a fraction of the rated power has to be carried by the frequency converter, which reduces its size and cost. It is vital to the manufacturer of these generators, to reliably predict the operating behaviour by using a suitable mathematical model. This paper elaborately describes such a model for the simulation of the steady state behaviour with a special focus on saturation and losses. Methods for modeling the nonlinearities and for solving the resulting nonlinear equations are described. Simulation results are verified by comparing them to measurement values. Results show that strong saturation of the main field increases the necessary rotor current when the wind power plant has to deliver reactive power to the grid while operating under overvoltage conditions.
机译:双馈感应发电机与变频器结合使用,可以对具有变速驱动器且额定输出功率高达几兆瓦的大型风力发电厂进行经济的构造。与定速发电机相比,此配置的优点是尽管风速不断变化,但仍具有很高的能量产生率,对电网的负面影响减少以及无功功率控制的可能性。此外,变频器仅需承载额定功率的一小部分,从而减小了尺寸和成本。对于这些发电机的制造商而言,至关重要的是,通过使用合适的数学模型来可靠地预测运行行为。本文详细描述了这种用于模拟稳态行为的模型,并特别关注饱和度和损耗。描述了建模非线性和求解所得非线性方程的方法。通过将仿真结果与测量值进行比较来验证仿真结果。结果表明,当风力发电厂必须在过压条件下运行时必须向电网输送无功功率时,主场的强饱和度会增加必要的转子电流。

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