Coupled FEM-Control Simulation in the Analysis of Electrical Machines and Converters

S. Kanerva, J. Kaukonen, Á. Szűcs, Terttu Hautamaki
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引用次数: 11

Abstract

Coupled simulation environment is presented, where electrical machines are modeled by the finite element method (FEM) with circuit equations and coupled to converter models in a system simulator. The method is based on weak coupling, providing possibility for multiple time step levels in the system model. Examples concerning the analysis of current and voltage harmonics, additional losses and tooth forces, are presented for 2 MW cage induction motor, 9 MW and 12.5 MW synchronous motors and 1.5 MW permanent magnet synchronous motor supplied by frequency converters. Also the future outlook of coupled FEM-system simulation is discussed in terms of the actual need for coupled models and the research interests on the coupling method development.
耦合fem控制仿真在电机和变换器分析中的应用
提出了一种耦合仿真环境,在该环境中,电机采用电路方程的有限元法进行建模,并与系统模拟器中的变换器模型进行耦合。该方法基于弱耦合,为系统模型的多时间步长提供了可能性。给出了2 MW笼型异步电动机、9 MW和12.5 MW同步电动机以及1.5 MW变频永磁同步电动机的电流和电压谐波、附加损耗和齿力分析实例。从耦合模型的实际需求和耦合方法发展的研究方向出发,对耦合有限元系统仿真的发展前景进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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