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Inclusion of interbar currents in a network-field coupled time-stepping finite-element model of skewed-rotor induction motors

机译:斜转子感应电动机网络场耦合时步有限元模型中的条间电流包含

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摘要

In order to include the interbar currents of skewed-rotor inductor motors in finite-element analysis, a three-dimensional (3-D) model is usually necessary. In this paper a two-dimensional multislice time-stepping finite element method of skewed-rotor induction motors is presented to solve such complicated 3-D problems. It is shown that the network of the rotor cage is coupled to finite-element equations so that the interbar currents in the rotor can be taken into account, By arranging the unknowns and mesh-current equations ingeniously, the resultant coefficient matrix of the global system equations are made symmetrical. Compared with 3-D finite-element methods, the computation time for solving field equations with the proposed method is significantly shorter. The model can be used to estimate the high-order harmonic stray losses in induction motors. A comparison between computed and tested results is also given.
机译:为了在有限元分析中包括偏斜转子感应电动机的电流,通常需要一个三维(3-D)模型。本文提出了一种斜交转子感应电动机的二维多层时步有限元方法,以解决这类复杂的3-D问题。结果表明,转子笼的网络与有限元方程耦合,因此可以考虑转子中的棒间电流。使方程对称。与3-D有限元方法相比,该方法求解场方程的计算时间大大缩短。该模型可用于估算感应电动机中的高次谐波杂散损耗。还给出了计算结果与测试结果之间的比较。

著录项

  • 作者

    Ho, SL; Li, HL; Fu, W;

  • 作者单位
  • 年度 1999
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  • 原文格式 PDF
  • 正文语种 en
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