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Power balanced electromagnetic torque computation in electric machines based on energy conservation in finite-element method

机译:基于能量守恒有限元方法的电机功率平衡电磁转矩计算

摘要

Time stepping finite-element method can be used to compute the electromagnetic torque on the rotor of electric machines. During calculation, the magnetic field equations are solved for finding the field distribution, and Maxwell stress tensor method is usually used for force distribution. However, the solutions from the two different sets of mathematical systems cannot guarantee the energy input and output of the system are balanced. In some cases unrealistic results may occur in that, for example, the calculated efficiency is higher than 100%. In particular, the accuracy of force computation is largely dependent on the mesh qualities and relative position changes along the integration path. In this paper, an algorithm of power balanced torque computation based on considerations of energy conservation is presented. The main salient merit of this method is that it guarantees the input energy and output energy are balanced as the rotor moves, and the computed torque is less sensitive to mesh quality and position changes.
机译:时间步长有限元法可用于计算电机转子上的电磁转矩。在计算过程中,求解磁场方程以找到场分布,而麦克斯韦应力张量法通常用于力分布。但是,来自两组不同的数学系统的解决方案不能保证系统的能量输入和输出是平衡的。在某些情况下,可能会出现不切实际的结果,例如,计算出的效率高于100%。特别是,力计算的精度很大程度上取决于网格质量和沿积分路径的相对位置变化。本文提出了一种基于能量守恒的功率平衡转矩计算算法。该方法的主要优点是,它可以确保转子运动时输入能量和输出能量保持平衡,并且计算出的转矩对网格质量和位置变化不太敏感。

著录项

  • 作者

    Niu S; Ho SL; Fu WN;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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