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Boundary-integral model of permanent magnet of a tube segment as shape

机译:管段永磁体形状的边界积分模型

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The magnetic field due to a permanent magnet of a tube-side segment as shape and of radial-oriented magnetization is considered. Such a sheet modelling a single pole of the magnet is used to express the suitable contribution to magnetic quantities. A boundary-integral approach is applied that is based on a virtual scalar quantity attributed to the magnet pole. Such an approach leads to express analytically the scalar magnetic potential and the magnetic flux density by means of the elliptic integrals. Numerical examples of the computed fields are given. The general idea of the presented approach is mainly directed towards designing the magnetic field within the air gap of electric machines with permanent magnets as an excitation source. Other technical structures with permanent magnets may be a subject of this approach as well.
机译:考虑了由于管侧段的永磁体的形状和径向磁化而产生的磁场。这种对磁体的单极建模的薄片用于表达对磁通量的适当贡献。应用了基于边界积分方法,该方法基于归因于磁极的虚拟标量。这种方法导致借助于椭圆积分分析地表达标量磁势和磁通密度。给出了计算域的数值示例。所提出的方法的总体思想主要是针对在以永磁体作为激励源的电机的气隙内设计磁场。具有永磁体的其他技术结构也可以是该方法的主题。

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