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Electromagnetic field analysis of induction motors by finite element method and its application to phantom loading.

机译:感应电动机的电磁场有限元分析及其在幻像加载中的应用。

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摘要

A precise estimation of electromagnetic fields of skewed induction motors when high-order harmonic fields need to be considered continues to be a challenging problem for researchers. The thesis presents a time stepping finite element method (FEM) of common skewed rotor bar induction motors. The method being developed consists of two parts: (1) 2-D multi-slice circuit-torque-field coupled time stepping FEM model; and (2) 3-D eddy-current time stepping FEM model. In the 2-D model, the system equations will directly include the effects of saturation, eddy-current, non-sinusoidal quantities and the movements of the rotor. The end effects of the motors together with the external circuit conditions are considered collectively by coupling FEM with circuit equations. The torque equation is also coupled in the system equations so that the starting process of the motors can be simulated precisely. To estimate the inter-bar current loss, the system equations of 2-D FEM and 3-D FEM are solved simultaneously by using time stepping method. Hence the exact waveforms of currents, magnetic vector potentials and torque in the time domain can be obtained directly.; In the thesis the following new methods are presented: (1) In time stepping FEM models, special techniques to reduce computing time and to increase computing accuracy are presented. The techniques developed will take into account the FEM mesh rotation, the solution of the system performance when torque equation is to be coupled, an automatic control of time step size within the program. An incremental method is also developed for finding the solution of steady-state performance of the motor. (2) New forms of the governing equations for a multi-slice model are derived. This approach allows the meshes of multi-slices to be regarded as one 2-D mesh so that the algorithm is very similar to that of general 2-D problems. The fields of the multi-slices are being solved en bloc simultaneously. (3) The 3-D eddy-current FEM of induction motors is solved by using time stepping method. A new iterative method for the solution of the 3-D complex FEM model is presented so that the computing time can be greatly reduced. (4) Formulas for the direct computation of iron losses to incorporate the non-sinusoidal characteristic of variables are presented.; The developed FEM program, as a precise dynamic model of induction motors, has been used to predict the induction motor's behaviour in different operating conditions. In particular, it has been used to compute the starting process and to estimate the stray losses, which are difficult to be dealt with by using traditional methods for induction motors. It has also been used to simulate and assess the operation of phantom loading of induction motors. The results obtained by using the program being developed have very good correlation with the test data for a large number of cases studied.
机译:当需要考虑高次谐波场时,准确估计偏斜感应电动机的电磁场仍然是研究人员面临的难题。本文提出了一种常见的偏斜转子感应电动机的时步有限元方法。正在开发的方法包括两个部分:(1)2-D多层电路-转矩-场耦合时间步进有限元模型; (2)3-D涡流时间步进有限元模型。在二维模型中,系统方程式将直接包括饱和度,涡流,非正弦量和转子运动的影响。通过将FEM与电路方程式结合起来,可以共同考虑电动机的最终效果以及外部电路条件。转矩方程式也与系统方程式耦合,因此可以精确地模拟电动机的起动过程。为了估算条间电流损耗,采用时间步长法同时求解了2-D FEM和3-D FEM的系统方程。因此,可以直接获得时域中电流,磁矢量势和转矩的精确波形。本文提出了以下新方法:(1)在时间步进有限元模型中,提出了减少计算时间和提高计算精度的特殊技术。开发的技术将考虑FEM网格旋转,将扭矩方程式耦合时系统性能的解决方案,程序中时间步长的自动控制。还开发了一种增量方法来寻找电动机稳态性能的解决方案。 (2)导出了多层模型的控制方程的新形式。这种方法允许将多个切片的网格视为一个2D网格,因此该算法与一般的2D问题非常相似。多个字段的字段同时被 en bloc 求解。 (3)采用时间步进法求解感应电动机的3D涡流FEM。提出了一种求解3-D复杂有限元模型的新的迭代方法,从而大大减少了计算时间。 (4)给出了直接计算铁损以纳入变量非正弦特性的公式;作为感应电动机的精确动态模型,已开发的FEM程序已用于预测感应电动机在不同运行条件下的行为。特别是,它已用于计算启动过程并估算杂散损耗,而使用传统的感应电动机方法很难解决这些杂散损耗。它也已用于模拟和评估感应电机的幻像负载的操作。通过使用正在开发的程序获得的结果与大量研究案例的测试数据具有很好的相关性。

著录项

  • 作者

    Fu, Weinong.;

  • 作者单位

    Hong Kong Polytechnic (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic (People's Republic of China).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:48:14

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