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首页> 外文期刊>IEEE Transactions on Energy Conversion >A Scaled Mesh/Nodal Formulation of Magnetic Equivalent Circuits With Motion
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A Scaled Mesh/Nodal Formulation of Magnetic Equivalent Circuits With Motion

机译:带有运动的磁等效电路的比例网格/节点公式

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In this paper, the focus is on the efficient solution of magnetic equivalent circuits that include relative motion between components. It is shown that by combining the use of mesh and nodal analysis, one can avoid the need to restructure the circuit topology, which is a step encountered in strictly mesh-based approaches. In addition, one can overcome the poor convergence properties observed in strictly nodal-based formulations. A scaling of variables is introduced to ensure the condition that the number of the mixed meshodal matrices remains relatively low. The proposed scaled model structure is then extended to magnetic equivalent circuits that are coupled to electrical systems for the analysis of dynamic performance. It is shown that the numerical properties of the coupled scaled model remain strong.
机译:在本文中,重点是有效的电磁等效电路解决方案,其中包括组件之间的相对运动。结果表明,通过结合使用网格和节点分析,可以避免重构电路拓扑的需要,这是严格基于网格的方法中遇到的步骤。另外,可以克服严格基于节点的配方中观察到的较差的收敛性。引入变量的缩放以确保混合网格/节点矩阵的数量保持相对较低的条件。然后,将提出的比例模型结构扩展到等效磁电路,该等效电路耦合到电气系统以分析动态性能。结果表明,耦合比例模型的数值特性仍然很强。

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