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Application of automatic choice of step size for time stepping finite element method to induction motors

机译:步长有限元方法的步长自动选择在感应电动机中的应用

摘要

Although the time stepping finite element method (FEM) is a powerful tool to simulate the operation of electrical machines, it has not been applied to practical problems widely because it requires a large amount of CPU time. This paper proposes to control the time step size automatically within the program to save the computing time substantially. It will be shown that only simple formulae for estimating the local truncation errors at each time step using Backward Euler's method or Crank-Nicolson's method are all that required to be derived. These formulae require no extra complicated computation. Hence the reported algorithm can be extended easily to many finite element investigations to make FEM a practical tool to industrial problems. The strategy in choosing the optimal step size is described. The proposed algorithm is used to study the transient behaviour of an induction motor.
机译:尽管时间步进有限元方法(FEM)是模拟电机运行的强大工具,但由于它需要大量的CPU时间,因此尚未广泛应用于实际问题。本文提出在程序中自动控制时间步长,以节省大量的计算时间。将显示出仅需要使用后向欧拉法或Crank-Nicolson法估算每个时间步的局部截断误差的简单公式。这些公式不需要额外的复杂计算。因此,所报告的算法可以轻松地扩展到许多有限元研究,以使FEM成为解决工业问题的实用工具。描述了选择最佳步长的策略。该算法用于研究感应电动机的瞬态行为。

著录项

  • 作者

    Ho SL; Fu WN; Wong HC;

  • 作者单位
  • 年度 1997
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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