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Theoretical and Experimental Investigation of Multiple Horizontal Diamagnetically Stabilized Levitation With Permanent Magnets

机译:永磁体水平水平多次磁化稳定悬浮的理论和实验研究

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This paper reports the study of a multiple horizontal diamagnetically stabilized levitation setup with two or more free floating permanent magnets. In a first step, the authors present the development of a fast and accurate analytical calculation method for the equilibrium point determination and stability check of the floating magnets. The proposed method uses equivalent magnetic charges for modeling the permanent magnets yielding compact analytical formulas for the flux density. Furthermore, demagnetization in open-loop of the used NdFeB magnets is analytically taken into account by determining their operating point on the BH curve. Compared to sole numerical approaches, the developed calculation method offers a significant reduction of computation time and is especially suitable when performing parameter variations. Finally, the calculation results are validated against several experimental levitation setups including one to three floating magnets.
机译:本文报告了具有两个或多个自由浮动永磁体的多重水平抗磁稳定悬浮装置的研究。在第一步中,作者提出了一种快速,准确的分析计算方法的开发,用于确定浮动磁铁的平衡点并进行稳定性检查。所提出的方法使用等效磁场电荷对永磁体进行建模,从而得出磁通密度的紧凑分析公式。此外,通过确定BH曲线上的NdFeB磁体的工作点来分析地考虑开环中的退磁。与唯一的数值方法相比,开发的计算方法显着减少了计算时间,尤其适用于执行参数变化。最后,针对包括一到三个浮动磁铁在内的几种实验悬浮装置验证了计算结果。

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