基于有限元分析的无刷直流电动机齿槽转矩最小化定子改造设计

B. A. Kumar, C. Kamal, D. Amudhavalli, T. Thyagarajan
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引用次数: 7

摘要

由于具有高速范围,更高的熟练度,增强的动态响应和更长的寿命,BLDC电机是不同工业应用的首选。无刷直流电机具有高转矩脉动。这种转矩波动的主要原因是齿槽转矩。通过改变定子齿的齿跨来改变定子齿的齿形来减小齿槽转矩的研究和设计优化。它导致齿槽扭矩峰值到峰值的减小。因此,振动和噪音被最小化。采用有限元法对系统的解析设计进行了全面分析,并利用MagNet软件进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reformed Stator Design of BLDC Motor for Cogging Torque Minimization Using Finite Element Analysis
The BLDC motor is preferred for different industrial applications due to the advantage of high speed range, higher proficiency, enhanced dynamic response and longer life. BLDC motor have high torque ripple. Major reason for this torque ripple is cogging torque. This work shows the investigation and design optimization for decreasing the cogging torque by changing the stator teeth tang span to alternate the shape of stator teeth. It results in Peak to peak reduction of cogging torque. Hence the vibration and noise are minimized. The analytical design of the proposed system is completely analyzed using Finite Element Method (FEM) and the simulation is performed using MagNet software.
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