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Cylindrical Magnets and Coils: Fields, Forces, and Inductances

机译:圆柱磁体和线圈:场,力和电感

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This paper presents a synthesis of analytical calculations of magnetic parameters (field, force, torque, stiffness) in cylindrical magnets and coils. By using the equivalence between the amperian current model and the coulombian model of a magnet, we show that a thin coil or a cylindrical magnet axially magnetized have the same mathematical model. Consequently, we present first the analytical expressions of the magnetic field produced by either a thin coil or a ring permanent magnet whose polarization is axial, thus completing similar calculations already published in the scientific literature. Then, this paper deals with the analytical calculation of the force and the stiffness between thin coils or ring permanent magnets axially magnetized. Such configurations can also be modeled with the same mathematical approach. Finally, this paper presents an analytical model of the mutual inductance between two thin coils in air. Throughout this paper, we emphasize why the equivalence between the coulombian and the amperian current models is useful for studying thin coils or ring permanent magnets. All our analytical expressions are based on elliptic integrals but do not require further numerical treatments. These expressions can be implemented in Mathematica or Matlab and are available online. All our models have been compared to previous analytical and semianalytical models. In addition, these models have been compared to the finite-element method. The computational cost of our analytical model is very low, and we find a very good agreement between our analytical model and the other approaches presented in this paper.
机译:本文介绍了圆柱形磁体和线圈中的磁参数(场,力,转矩,刚度)的解析计算的综合信息。通过使用磁体的安培电流模型和库仑模型之间的等价关系,我们证明了轴向磁化的薄线圈或圆柱形磁体具有相同的数学模型。因此,我们首先介绍由极化方向为轴向的薄线圈或环形永磁体产生的磁场的解析表达式,从而完成已经在科学文献中发表的类似计算。然后,本文对轴向磁化的薄线圈或环形永磁体之间的力和刚度进行解析计算。还可以使用相同的数学方法对此类配置进行建模。最后,本文提出了空气中两个细线圈之间互感的解析模型。在整个本文中,我们强调为什么库仑模型和安培模型之间的等效性对于研究薄线圈或环形永磁体有用。我们所有的分析表达式都是基于椭圆积分,但不需要进一步的数值处理。这些表达式可以在Mathematica或Matlab中实现,并且可以在线获取。我们将所有模型与以前的分析和半分析模型进行了比较。此外,这些模型已与有限元方法进行了比较。我们的分析模型的计算成本非常低,我们发现我们的分析模型与本文介绍的其他方法之间有很好的一致性。

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