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首页> 外文期刊>Magnetics, IEEE Transactions on >A New Energy-Based Method for 3-D Finite-Element Nonlinear Flux Linkage Computation of Electrical Machines
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A New Energy-Based Method for 3-D Finite-Element Nonlinear Flux Linkage Computation of Electrical Machines

机译:电机3-D有限元非线性磁链计算的基于能量的新方法

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摘要

This paper presents a new method for computation of the nonlinear flux linkage in 3-D finite-element models (FEMs) of electrical machines. Accurate computation of the nonlinear flux linkage in 3-D FEM is not an easy task. Compared to the existing energy-perturbation method, the new technique introduced in this paper is much easier to use and is computational faster. This method is derived based on the “apparent energy.” Calculation of the nonlinear flux linkage from this energy avoids numerical differentiation, which is sensitive to numerical errors but is required in the traditional energy-perturbation method. The new method proposed is validated using experimental results on two different permanent magnet machines.
机译:本文提出了一种计算电机3-D有限元模型(FEM)中非线性磁链的新方法。在3-D FEM中准确计算非线性磁链不是一件容易的事。与现有的能量摄动方法相比,本文介绍的新技术易于使用且计算速度更快。该方法是基于“表观能量”得出的。利用这种能量计算非线性磁链可以避免数值微分,这种微分对数值误差敏感,但是传统的能量微扰方法却需要这样做。所提出的新方法通过在两个不同的永磁电机上的实验结果进行了验证。

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