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首页> 外文期刊>IEEE Transactions on Magnetics >Transient Performance Analysis of Induction Motor Using Field-Circuit Coupled Finite-Element Method
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Transient Performance Analysis of Induction Motor Using Field-Circuit Coupled Finite-Element Method

机译:感应电动机瞬态性能的场-电路耦合有限元分析

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In this paper, the application of field-circuit coupled finite-element method for predicting the performance of induction motor (IM) under a sinusoidal voltage excitation is described. The numerical analysis is performed by solving the nonlinear time-stepping finite-element equations coupled with the circuit equations and mechanical motion equations. The circuit equations are described by means of improved nodal method. The local analytical solution of Laplace equation is used to improve the precision of electromagnetic torque. The performances of both three- and single-phase IMs are simulated using the developed field-circuit coupled code. The comparison among the results calculated by the code, the commercial FE package, FLUX 2-D, and the experiment results suggests the correctness of the field-circuit coupled method and related developed code.
机译:在本文中,描述了场-电路耦合有限元方法在正弦电压激励下预测感应电动机性能的应用。通过求解非线性时步有限元方程以及电路方程和机械运动方程来进行数值分析。通过改进的节点法描述了电路方程。拉普拉斯方程的局部解析解可提高电磁转矩的精度。使用开发的现场电路耦合代码可以仿真三相和单相IM的性能。通过该代码,商用有限元软件包,FLUX 2-D所计算的结果与实验结果之间的比较表明,场电路耦合方法和相关开发代码的正确性。

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