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A combined vector potential-scalar potential method for FE computation of 3D magnetic fields in electrical devices with iron cores

机译:矢量电势-标量电势组合方法用于有限元计算铁芯电气设备的3D磁场

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摘要

A method of combined use of magnetic vector potential based finite-element (FE) formulations and magnetic scalar potential (MSP) based formulations for computation of three-dimensional magnetostatic fields is introduced. In this method, the curl-component of the magnetic field intensity is computed by a reduced magnetic vector potential. This field intensity forms the basis of a forcing function for a global magnetic scalar potential solution over the entire volume of the region. This method allows one to include iron portions sandwiched in between conductors within partitioned current-carrying subregions. The method is most suited to large-scale global-type 3D magnetostatic field computations in electrical devices, and in particular rotating electric machinery.
机译:介绍了一种结合使用基于磁矢量势的有限元(FE)公式和基于磁标量势(MSP)的公式来计算三维静磁场的方法。在这种方法中,磁场强度的卷曲分量通过减小的磁矢量电势来计算。该场强构成了该区域整个体积上整体磁标量势解的强迫函数的基础。该方法允许包括夹在分隔的载流子区域内的导体之间的铁部分。该方法最适合于电子设备特别是旋转电机中的大规模全局3D静磁场计算。

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