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Equivalent circuit parameters calculation of a wound rotor brushless Doubly-Fed Machine based on finite element analysis

机译:基于有限元分析的绕线转子无刷双馈电机等效电路参数计算

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摘要

The Brushless Doubly-Fed Machine (BDFM) has two sets of three-phase stator windings with different pole numbers and only one rotor which contains three phases windings. The two sets stator windings are named Power Winding (PW) and Control Winding (CW), but they cannot couple with each other directly. The Rotor Winding (RW) is particularly designed to couple with both of them. The BDFM can be conceived as two distinct induction machines with the same frame, intended for operation in the self-cascaded mode. Therefore a fundamental equivalent circuit, using the standard per-phase model can be developed to represent the BDFM as two connected induction machines. The equivalent circuit is a simple method of representing the steady-state performance of the machine. This method, however, does not give enough accuracy because it assumes linearity of the iron core and derived from the analytical solutions under basic simplified assumptions. Thus, many correction factors are needed to adjust the design solution to fit the testing results, and significant errors may be caused. With the development of numerical modeling techniques, the finite element analysis (FEA) is well suited for the precise prediction of electromagnetic device. A method based on the use of complex 2-D finite element solutions for accurately predicting the steady-state performance of BDFM is presented, and the saturation effect is considered by introducing a new method named frozen permeability. Based on the new method, the magnetizing inductance and leakage inductance per phase can be worked out precisely.
机译:无刷双馈电机(BDFM)具有两组具有不同极数的三相定子绕组,并且只有一个包含三相绕组的转子。两组定子绕组分别称为“动力绕组”(PW)和“控制绕组”(CW),但它们不能直接相互耦合。转子绕组(RW)专门设计为与它们两者耦合。 BDFM可以看作是具有相同框架的两个不同的感应电机,旨在以自级联模式运行。因此,可以开发出使用标准每相模型的基本等效电路,以将BDFM表示为两个相连的感应电机。等效电路是表示电机稳态性能的简单方法。但是,此方法不能提供足够的精度,因为它假设铁芯呈线性,并且是在基本简化假设下从解析解得出的。因此,需要许多校正因子来调整设计解决方案以适合测试结果,并且可能会导致重大错误。随着数值建模技术的发展,有限元分析(FEA)非常适合电磁设备的精确预测。提出了一种基于复杂二维有限元解的方法,可以准确地预测BDFM的稳态性能,并通过引入一种称为冻结渗透率的新方法来考虑饱和效应。基于新方法,可以精确地计算出每相的励磁电感和漏电感。

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  • 来源
    《IEEE Magnetics Conference》|2015年|1-1|共1页
  • 会议地点 Beijing(CN)
  • 作者

    Jia, L.;

  • 作者单位

    Dept. of Electr. Machinery Huazhong Univ. of Sci. & Technol. Wuhan China;

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