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Precise Magnetic Field Modeling Techniques of Rotary Machines Using Transient Finite-Element Method

机译:瞬态有限元法的旋转机械精确磁场建模技术

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摘要

A general and precise method to model rotary machines based on transient magnetic field computation using finite-element method (FEM) is presented. The merits of the proposed method are that the nonlinear iteration on the rotor position can be avoided. Formulas to predict the rotor position and speed of the machine are deduced based on Taylor's expansion. A curvilinear element is used on the two sides of the sliding surface to reduce the numerical noises arising from mesh rotation. The proposed methods for dealing with matching boundary conditions and periodic boundary conditions are very general, accurate and flexible. Typical numerical experiment shows that the numerical error of the local magnetic potentials on the motion sliding surface is only one twentieth of that of traditional interpolation method.
机译:提出了一种基于有限元方法(FEM)的基于瞬态磁场计算的旋转机械建模通用方法。该方法的优点是可以避免转子位置的非线性迭代。根据泰勒的展开推导了预测电机转子位置和转速的公式。在滑动表面的两侧使用了曲线元素,以减少由于网格旋转而产生的数字噪声。所提出的用于处理匹配边界条件和周期性边界条件的方法非常通用,准确和灵活。典型的数值实验表明,运动滑动面上局部磁势的数值误差仅为传统插值方法的二十分之一。

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