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Modeling of iron losses in an induction machine based on a magnetic equivalent circuit in Modelica

机译:在Modelica中基于磁等效电路的感应电机铁损建模

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Finite element methods (FEM) allow estimating iron core losses including saturation effects in electric machines. Nevertheless, the analysis is computationally intense and not reflecting hysteresis behavior correctly. This work presents a 1D magnetic equivalent circuit (MEC) modeling approach for an induction machine, which allows performing accurate calculations of iron losses in the laminated core. This offers to consider spatial dependencies like in FEM, but with less computational effort. The developed magnetic non-linear lumped circuit elements (i.e. permeances) of the laminated iron core are specialized for pulsed operation. This enables to consider saturation- and hysteresis effects correctly. The proposed approach is implemented in Modelica; the model setup and the simulations are performed in Dymola. The validation of the developed 1D approach with FEM points out, that the MEC model is capable of estimating static and dynamic hysteresis losses during the electromagnetic energy conversion processes in the core lamination of an induction machine correctly.
机译:有限元方法(FEM)可以估算铁芯损耗,包括电机中的饱和效应。但是,分析的计算强度很高,不能正确反映滞后行为。这项工作提出了一种用于感应电机的一维磁等效电路(MEC)建模方法,该方法可以对叠片铁芯中的铁损进行准确的计算。这样就可以像FEM中那样考虑空间相关性,但所需的计算量更少。叠层铁芯的已开发的磁性非线性集总电路元件(即导磁率)专门用于脉冲操作。这样可以正确考虑饱和度和滞后效应。建议的方法在Modelica中实现;在Dymola中执行模型设置和仿真。用有限元法对已开发的一维方法的验证指出,MEC模型能够正确估计感应电机铁心叠片中电磁能转换过程中的静态和动态磁滞损耗。

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