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Impacts of cogging torque and its reduction for an external rotor permanent magnet alternator

机译:齿槽转矩对外转子永磁交流发电机的影响及其降低

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The outer rotor radial flux permanent magnet alternator (PMA) is more suitable for low-speed applications than axial flux or inner rotor radial flux PMA. With the reduction of rotational speed the cogging torque and ripple torque magnitude increases significantly which is known as pulsating torque. The increment of these torque factors superimpose on generated torque thereby degrading the quality of the output power. This superimposed torque increases body vibration and creates extra noise. This paper examines the impact of these torques especially the cogging torque, and extracts it from the actual torque to minimize its impacts on the performance of the machine. By using analytical method, total cogging torque has been derived and correlated from the cogging torque by Fourier series expression of a single stator slot. Some factors or parameters like fractional slotting, cogging torque goodness factor have been considered, examined and modified by using these derived expressions which are directly involved in cogging torque manipulation to minimize the cogging torque from an extremely low-speed outer rotor PMA arrangement to improve the performance and stability of the machine. The design aspects of the PMA have been examined using finite element method (FEA) for its higher accuracy.
机译:外部转子径向磁通永磁交流发电机(PMA)比轴向磁通或内部转子径向磁通PMA更适合于低速应用。随着转速的降低,齿槽转矩和脉动转矩的幅度显着增加,这被称为脉动转矩。这些转矩因子的增加会叠加在产生的转矩上,从而降低输出功率的质量。这种叠加的扭矩会增加车身振动并产生额外的噪音。本文研究了这些转矩的影响,尤其是齿槽转矩,并从实际转矩中提取出来,以最大程度地减少对机器性能的影响。通过分析方法,通过单个定子槽的傅里叶级数表达式,从齿槽转矩中导出了总齿槽转矩,并将其与相关。通过使用这些推导表达式已考虑,检查和修改了一些因素或参数,例如分数槽,齿槽转矩良好系数,这些表达式直接参与齿槽转矩操作,以最小化极低速外转子PMA布置产生的齿槽转矩,从而改善了机器的性能和稳定性。 PMA的设计方面已经使用有限元方法(FEA)进行了检查,以提高其准确性。

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