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首页> 外文期刊>Electric Power Applications, IET >Field and inductance calculations for coaxial circular coils with magnetic cores of finite length and constant permeability
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Field and inductance calculations for coaxial circular coils with magnetic cores of finite length and constant permeability

机译:具有有限长度和恒定磁导率的磁芯同轴圆形线圈的磁场和电感计算

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摘要

A circular coil equipped with magnetic core of finite length and constant permeability is difficult to analyse by traditional analytical methods in consequence of the complicated boundary conditions. The difficulties can be overcome by using the truncated region eigenfunction expansion method, and with the aid of a special source function () introduced in the work, this method can be simplified remarkably and concise expressions of the inductance of coils with magnetic cores are obtained. In addition, the calculations can be extended readily to a pair of coaxial coils with magnetic cores of finite length and different permeability. The eigenvalues and inversions of matrices are implemented numerically in the solving process, while most of calculations are accomplished by analytic integrations and matrix algebra, by which the deduced expressions are quite suitable for numerical evaluations. The proposed method is verified by the numerical results compared with those of finite-element method simulations, from which it is confirmed that the proposed method is much faster and more memory efficient.
机译:由于边界条件复杂,很难用传统的分析方法来分析具有有限长度和恒定磁导率的磁芯的圆形线圈。通过使用截断区域特征函数展开方法可以克服这些困难,并且借助工作中引入的特殊源函数(),可以显着简化该方法,并获得带磁芯线圈的电感的简洁表达式。另外,可以容易地将计算扩展到具有有限长度和不同磁导率的磁芯的一对同轴线圈。矩阵的特征值和求逆在求解过程中以数字方式实现,而大多数计算是通过解析积分和矩阵代数完成的,由此得出的表达式非常适合于数值评估。通过与有限元模拟的数值比较,验证了所提方法的有效性,从中可以证明所提方法速度更快,存储效率更高。

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