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Reduced-Order Models of Squirrel-Cage Induction Generators for Fixed-Speed Wind Turbines Under Unbalanced Grid Conditions

机译:电网不平衡条件下用于定速风力发电机的鼠笼式感应发电机的降阶模型

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摘要

This paper develops a study of reduced-order models for squirrel-cage induction generators used in the fixed-speed wind turbines. The squirrel-cage of these generators must be modeled with a double-cage for accuracy purposes. These proposed reduced-order models are valid for unbalanced grid conditions (unsymmetrical faults), which require flux and current decomposition into positive- and negative-sequences. Three reduced-order models are obtained: R2 model, where the derivative of the positive- and negative-sequences of the stator fluxes are neglected (the usual approach in the literature); R1 model, where the derivative of the negative-sequence of the rotor fluxes are also neglected (proposed model); and R0 model, where all the stator and rotor fluxes are neglected (steady-state electrical model). The analytical models are validated with simulations carried out in the MATLAB and with experimental tests. The results show that R1 model (proposed model) shows a good performance (similar to the full-order model) under unbalanced conditions.
机译:本文研究了用于定速风力涡轮机的鼠笼式感应发电机的降阶模型。为了精确起见,必须使用双笼对这些发生器的鼠笼建模。这些建议的降阶模型适用于不平衡的电网条件(不对称故障),这种情况需要磁通和电流分解为正序和负序。获得了三个降阶模型:R2模型,其中忽略了定子磁通的正序和负序的导数(文献中的常用方法); R1模型,其中转子磁通负序的导数也被忽略(建议模型);和R0模型,其中所有定子和转子磁通都忽略不计(稳态电气模型)。通过在MATLAB中进行的仿真和实验测试对分析模型进行了验证。结果表明,在不平衡条件下,R1模型(建议模型)具有良好的性能(类似于全阶模型)。

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