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Design method of a novel hybrid-flux magnetic gear using 3-D finite element method

机译:三维有限元法的新型混合磁磁齿轮的设计方法

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This paper presents a novel hybrid-flux magnetic gear, which integrates a transverse-flux magnetic gear and an axial-flux magnetic gear into a single unit. Compared to its conventional counterparts, the proposed magnetic gear transmits a relatively high torque density. When compared to the transverse-flux magnetic gear, this new structure employs an extra iron segment between the low-speed rotor and high-speed rotor to modulate the magnetic field and contribute to the transmission of additional torque. A three-dimensional (3-D) finite element method (FEM) is used for the analysis of the magnetic field. A variable decoupling method based on the sensitivity analysis of the design parameters is presented to accelerate the optimization process of the proposed machine.
机译:本文提出了一种新型混合磁通磁齿轮,其将横向通量磁齿轮和轴向通量磁齿轮集成到单个单元中。与其传统的对应物相比,所提出的磁齿轮透射相对高的扭矩密度。与横向磁通磁齿轮相比,这种新结构采用额外的铁段之间的低速转子和高速转子来调制磁场并有助于传输额外的扭矩。三维(3-D)有限元方法(FEM)用于磁场的分析。提出了一种基于设计参数灵敏度分析的可变解耦方法,以加速所提出的机器的优化过程。

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