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Torque Ripple Reduction Method With Asymmetric Pole for Wound-Field Synchronous Motor

机译:绕线式同步电动机不对称极点转矩脉动减小方法

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摘要

This paper deals with an effective reduction method of torque ripple by adopting novel asymmetric pole structure of wound-field synchronous motor. In general, skewed pole structure of a rotor is used to reduce torque ripple despite decreasing an average torque. This paper introduces the design parameter of shift angle of an asymmetric pole-plate for effective elimination of torque ripple. In addition, the design can maintain the length of field winding compared with skewed pole structure, which means low copper loss in field winding and low material cost. In addition, average torque can be increased at the same input voltage over the driving region as well. The 2-D finite element method is used for the analysis of proposed model and skewed model. For the comparison of characteristics between the skewed model and proposed model, skewed pole with three steps is introduced with low torque ripple.
机译:本文采用新型的绕线式同步电动机非对称磁极结构,有效地减小了转矩脉动。通常,尽管减小了平均转矩,但转子的偏磁极结构仍用于减小转矩波动。介绍有效消除转矩脉动的非对称极板位移角的设计参数。另外,与偏极结构相比,该设计可以保持励磁绕组的长度,这意味着励磁绕组中的铜损耗低且材料成本低。另外,在驱动区域上相同的输入电压下,平均扭矩也可以增加。二维有限元方法用于分析所提出的模型和偏斜模型。为了比较偏斜模型和提出的模型的特性,引入了三步偏斜的极柱,转矩脉动较低。

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