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Design and Experimental Validation for Direct-Drive Fault-Tolerant Permanent-Magnet Vernier Machines

机译:直接驱动容错永磁游标机器的设计与实验验证

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A fault-tolerant permanent-magnet vernier (FT-PMV) machine is designed for direct-drive applications, incorporating the merits of high torque density and high reliability. Based on the so-called magnetic gearing effect, PMV machines have the ability of high torque density by introducing the flux-modulation poles (FMPs). This paper investigates the fault-tolerant characteristic of PMV machines and provides a design method, which is able to not only meet the fault-tolerant requirements but also keep the ability of high torque density. The operation principle of the proposed machine has been analyzed. The design process and optimization are presented specifically, such as the combination of slots and poles, the winding distribution, and the dimensions of PMs and teeth. By using the time-stepping finite element method (TS-FEM), the machine performances are evaluated. Finally, the FT-PMV machine is manufactured, and the experimental results are presented to validate the theoretical analysis.
机译:容错永磁游标(FT-PMV)机器设计用于直接驱动应用,包括高扭矩密度和高可靠性的优点。基于所谓的磁力传动效果,PMV机器通过引入磁通调制磁极(FMP)具有高扭矩密度的能力。本文研究了PMV机器的容错特性,并提供了一种设计方法,不仅能够满足容错要求,还可以保持高扭矩密度的能力。已经分析了所提出的机器的操作原理。设计过程和优化具体地提出,例如槽和杆的组合,绕组分布和PMS和齿的尺寸。通过使用时间步进有限元方法(TS-FEM),评估机器性能。最后,制造了FT-PMV机器,并提出了实验结果以验证理论分析。

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