转矩脉动
转子(电动)
控制理论(社会学)
扭矩
转矩密度
开关磁阻电动机
磁阻
有限元法
失真(音乐)
总谐波失真
直接转矩控制
磁阻电动机
功率(物理)
计算机科学
不对称
谐波
工程类
物理
结构工程
电压
机械工程
电气工程
磁铁
感应电动机
电信
放大器
人工智能
带宽(计算)
控制(管理)
量子力学
热力学
作者
César Gallardo,Juan A. Tapia,Michele Degano,Hanafy Mahmoud,Alvaro E. Hoffer
标识
DOI:10.1109/icem51905.2022.9910665
摘要
Synchronous Reluctance Machine has attracted increasing attention for high performance applications. However, they can be vulnerable to high torque ripple if they are not properly designed. In this paper, it is analyzed how the rotor geometry has a high influence on its performance. A rotor structure with two flux barriers per pole is optimized using a Multi-Objective Genetic Algorithm and Finite Element Method. The different conditions imposed in the optimization lead to two final models, one symmetrical and one asymmetrical of the rotor flux barriers. When comparing the performance indexes of the final models, a considerable improvement is observed in the asymmetric model, which achieves a reduction of more than 40% in the ripple torque without sacrificing the average torque, the power factor also improves and the harmonic distortion in the flux density decreases.
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