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A new technique of cogging torque suppression in direct-drive permanent magnet brushless machines

机译:直驱永磁无刷电机中齿槽转矩抑制的新技术

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In direct-drive electric propulsion systems, where there is no reduction gear to minimize and absorb the adverse effects due to cogging torque generated by the permanent magnet (PM) machine, minimization of cogging torque generation is of particular importance. In this paper, a novel axial magnet pole pairing method is proposed to minimize cogging torque generation in a special three-phase outer-rotor PM brushless machine, which uses uneven stator poles to enhance back EMF. Analytical formulas of the machine's cogging torque are first derived. The new technique is compared with conventional cogging torque suppression methods by means of analytical models and comprehensive two- and three-dimensional finite element analysis (FEA). The FEA results show that the new method not only achieves effective cogging torque reduction, but also results in less magnet material with no compromise on machine performance. Finally, the validity of the FEA model is verified by experimental results from the prototype machine.
机译:在直接驱动的电力推进系统中,没有减速装置来最小化和吸收由于永磁体(PM)机器产生的齿槽转矩引起的不利影响,因此,将齿槽转矩产生的最小化尤为重要。本文提出了一种新颖的轴向磁极配对方法,以最小化特殊三相外转子永磁无刷电机中的齿槽转矩产生,该电机使用不均匀的定子磁极来增强反电动势。首先推导了机器的齿槽转矩的解析公式。通过分析模型以及全面的二维和三维有限元分析(FEA),将该新技术与传统的齿槽转矩抑制方法进行了比较。有限元分析结果表明,该新方法不仅可以有效降低齿槽转矩,而且可以减少磁铁材料,并且不会影响机器性能。最后,通过原型机的实验结果验证了FEA模型的有效性。

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