Stator Notching Design of Permanent Magnet Brushless DC Motor to Mitigate the Cogging Torque

C. A. Perianayagam, V. Krishnakumar, R. Dhanushvarma
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引用次数: 1

Abstract

The BLDC motor provokes the best option for emerging applications like electrical vehicles, surgical robots, artificial heart, equipment in industries. Remarkable characteristics feature like prominent dynamic behavior beyond the scope of the speed limit, astounding torque density, we shaped structure; enhanced efficiency predicts the BLDC motor to be competent for another two decades until the alternative arrives. However, the torque undulation and cogging torque become noticeable restrictions posed by this motor even numerous inherent positive receptions associated with it. To retain the torque distinctiveness, the furtherance of the finite element method (FEM) with appreciable geometrical modification has been accomplished by utilizing recent newfangled infolytica software. The notching (1mm) of stator tooth has been pertained for BLDC motor to outstretch the quality of torque, thereby the effects of vibration and acoustic noise have been curbed.
减轻齿槽转矩的永磁无刷直流电动机定子刻槽设计
无刷直流电机为电动汽车、手术机器人、人工心脏、工业设备等新兴应用提供了最佳选择。卓越的特性:超越限速范围的动态性能突出,惊人的扭矩密度,我们形结构;提高效率预测无刷直流电机还能胜任另外二十年,直到替代方案出现。然而,转矩波动和齿槽转矩成为明显的限制,该电机甚至与它相关的许多固有的积极接收。为了保持扭矩的独特性,利用最新的新颖的infolytica软件,对具有明显几何修改的有限元法(FEM)进行了进一步的改进。在无刷直流电动机中,定子齿槽(1mm)可以有效地延长转矩质量,从而抑制振动和噪声的影响。
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