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Force Calculations in 3-D Cylindrical Structures Using Fourier Analysis and the Maxwell Stress Tensor

机译:使用傅立叶分析和麦克斯韦应力张量计算3-D圆柱结构中的力

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摘要

Analytical modeling is still a very effective manner to calculate the magnetic fields in permanent magnet devices. From these magnetic fields, device quantities, e.g., force, emf, or inductance, can be calculated. This paper presents a semianalytical technique, based on a 2-D Fourier series to represent the magnetic field, to describe the force components due to permanent magnets in 3-D cylindrical structures. The Maxwell stress tensor method is selected to calculate these force components in the cylindrical coordinate system. The method is analytically evaluated by inserting the analytical expressions describing the magnetic fields. The obtained force equations avoid the use of numerical integration of the magnetic fields resulting in a fast and accurate force calculation method. An example of a 3-D cylindrical structure is modeled and validated by means of a magnetostatic finite element analysis (FEA), and excellent agreement is found.
机译:分析建模仍然是计算永磁装置中磁场的一种非常有效的方式。根据这些磁场,可以计算出器件的数量,例如力,电动势或电感。本文提出了一种基于2-D傅里叶级数来表示磁场的半解析技术,以描述3-D圆柱结构中由于永磁体而产生的力分量。选择麦克斯韦应力张量法来计算圆柱坐标系中的这些力分量。通过插入描述磁场的分析表达式来对方法进行分析评估。所获得的力方程式避免了使用磁场的数值积分,从而实现了快速准确的力计算方法。通过静磁有限元分析(FEA)对3-D圆柱结构的示例进行建模和验证,并且发现了极好的一致性。

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