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Analysis of Consequent-Pole Flux Reversal Permanent Magnet Machine With Biased Flux Modulation Theory

机译:偏磁通调制理论的磁极反向磁极反转电机分析

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摘要

This paper proposes a consequent-pole flux reversal machine (CP-FRM) with biased flux modulation theory, which employs homopolar permanent magnets (PMs) placed between the adjacent stator poles. The machine topology is introduced from the perspective of FRM with a shifted magnet position and CP arrangement, and the performance comparison between the proposed CP-FRM and its original surface-mounted PM (SPM) counterpart is presented to highlight the torque improvement of the CP structure. Then, a simplified permeance model is applied to the CP-FRM to identify the principal effective air-gap field harmonics engaging in the torque productions. It shows that the CP-FRM works based on a biased flux modulation effect due to its asymmetric air-gap field distribution caused by the CP configuration, which unveils its underlying torque improvement mechanism over its SPM-FRM counterpart. In order to obtain the highest torque capability, the key design parameters are analytically optimized by analyzing the winding configuration, which aids the establishment of a general design guideline for the CP-FRM. The analytical and FE results are validated by experiments.
机译:本文提出了一种具有偏向磁通调制理论的后极磁通逆向电机(CP-FRM),该电机采用放置在相邻定子磁极之间的同极性永磁体(PMs)。从具有偏移磁铁位置和CP布置的FRM的角度介绍了机器拓扑,并提出了建议的CP-FRM与原始表面安装PM(SPM)对应件之间的性能比较,以突出CP的扭矩改进结构体。然后,将简化的磁导模型应用于CP-FRM,以识别参与转矩产生的主要有效气隙磁场谐波。它表明CP-FRM由于CP配置导致其不对称的气隙磁场分布而基于偏置的磁通调制效应工作,这揭示了其在SPM-FRM对应产品上潜在的转矩改进机制。为了获得最高的扭矩能力,通过分析绕组配置对关键设计参数进行了分析优化,这有助于建立CP-FRM的通用设计准则。通过实验验证了分析结果和有限元分析结果。

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