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Transient Analysis of a Magnetic Gear Integrated Brushless Permanent Magnet Machine Using Circuit-Field-Motion Coupled Time-Stepping Finite Element Method

机译:磁-齿轮集成无刷永磁电机瞬态分析的电路-场-动耦合时步有限元方法

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摘要

In this paper, a novel magnetic gear integrated brushless permanent magnet machine is studied. The main merit of the machine is that the torque produced by the stator windings can be transmitted between the low-speed rotor and the high-speed rotor through the modulation of ferromagnetic pole pieces; hence it can output a large torque at a low speed. The operating principle of the machine is discussed and its steady-state and transient performances are analyzed using circuit-field-motion coupled time-stepping finite element method. Detailed analysis about its gear ratio, cogging torque, core losses, and power factor are reported. Theoretical analysis agrees well with the FEM computation results.
机译:本文研究了一种新型的电磁齿轮集成无刷永磁电机。该机器的主要优点是,定子绕组产生的转矩可通过铁磁极片的调制在低速转子和高速转子之间传递;因此,它可以在低速时输出大扭矩。讨论了该电机的工作原理,并使用电路-场-运动耦合时步有限元方法分析了其稳态和瞬态性能。报告了有关齿轮比,齿槽转矩,铁芯损耗和功率因数的详细分析。理论分析与有限元计算结果吻合良好。

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