用分割法计算任意形状的圆形和闭合曲线两根载流细丝之间的磁力

IF 1.5 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Journal on Multiscale and Multiphysics Computational Techniques Pub Date : 2025-01-30 DOI:10.1109/JMMCT.2025.3536795
Kirill V. Poletkin;Pavel Udalov;Alexey Lukin;Ivan Popov;Haojie Xia
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引用次数: 0

摘要

提出了一种计算两根具有任意形状的圆形和闭合曲线的载流细丝之间产生的磁力的方法。该方法是基于最近制定的用于计算相似灯丝系统相互感应的分割方法。利用任何曲线都可以用一组线段精确插值的事实,推导出一组圆形灯丝与线段之间磁力的计算公式,该方法还成功地应用于估算出闭合曲线上的磁力分布。作为算例,利用该方法有效地计算了圆形细丝与多边形、圆形和三维曲线等封闭曲线之间的磁力及其分布。并将该方法应用于永磁体和载流线圈等刚体之间的合力计算。采用有限元法和文献中的解析公式对计算结果进行了验证。
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Efficient Calculation of Magnetic Force Between Two Current-Carrying Filaments of Circular and Closed-Curve of Arbitrary Shape via Segmentation Approach
An approach for calculation of the magnetic force arising between two electric current-carrying filaments having a circular and closed-curve of arbitrary shape is developed. The developed approach is based on the recently formulated segmentation method applied for the calculation of the mutual induction for a similar filament system. Employing the fact that any curve can be interpolated by a set of line segments with the desired accuracy and deriving the set of formulas for calculating of the magnetic force between a circular filament and line segment, the developed approach was also successfully applied for the estimation of the distribution of magnetic force along the closed-curve in addition to the resulting one. As illustrative examples, the calculation of the magnetic force and its distribution between the circular filament and the following closed-curves such as polygons, circles and a 3D curve was efficiently performed by using the developed approach. Also, the developed method was applied for the calculation of the resultant magnetic force between the rigid bodies including permanent magnets and current-carrying coils. The results of calculation were validated successfully by using FEM method and the analytical formulas available in the literature.
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CiteScore
4.30
自引率
0.00%
发文量
27
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