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首页> 外文期刊>IEEE Transactions on Energy Conversion >A Novel Modeling Approach for Design Studies of Brushless Doubly Fed Induction Generator Based on Magnetic Equivalent Circuit
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A Novel Modeling Approach for Design Studies of Brushless Doubly Fed Induction Generator Based on Magnetic Equivalent Circuit

机译:基于磁等效电路的无刷双馈感应发电机设计研究的新型建模方法

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摘要

Brushless doubly fed induction generator (BDFIG) has substantial benefits, which make it an attractive alternative as a wind turbine generator. However, it suffers from lower efficiency and larger dimensions in comparison to DFIG. Hence, optimizing the BDFIG structure is necessary for enhancing its situation commercially. In previous studies, a simple model has been used in BDFIG design procedure that is insufficiently accurate. Furthermore, magnetic saturation and iron loss are not considered because of difficulties in determination of flux density distributions. The aim of this paper is to establish an accurate yet computationally fast model suitable for BDFIG design studies. The proposed approach combines three equivalent circuits including electric, magnetic and thermal models. Utilizing electric equivalent circuit makes it possible to apply static form of magnetic equivalent circuit, because the elapsed time to reach steady-state results in the dynamic form is too long for using in population-based design studies. The operating characteristics, which are necessary for evaluating the objective function and constraints values of the optimization problem, can be calculated using the presented approach considering iron loss, saturation, and geometrical details. The simulation results of a D-180 prototype BDFIG are compared with measured data in order to validate the developed model.
机译:无刷双馈感应发电机(BDFIG)具有很多优点,使其成为风力发电机的诱人替代品。但是,与DFIG相比,它效率较低且尺寸较大。因此,优化BDFIG结构对于在商业上改善其状况是必要的。在先前的研究中,在BDFIG设计过程中使用了一个不够准确的简单模型。此外,由于难以确定磁通密度分布,因此未考虑磁饱和和铁损。本文的目的是建立一个适用于BDFIG设计研究的准确而计算快速的模型。所提出的方法结合了三个等效电路,包括电,磁和热模型。利用电气等效电路可以应用静态形式的磁等效电路,因为以动态形式达到稳态结果所花费的时间对于基于人口的设计研究而言太长了。可以使用提出的方法(考虑铁损,饱和度和几何细节)来计算评估优化问题的目标函数和约束值所必需的操作特性。将D-180原型BDFIG的仿真结果与测量数据进行比较,以验证开发的模型。

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