优化工具箱的设计旋转磁阻电机

I. Grace, R. Teymourzadeh, S. Bright, C. Aravind
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引用次数: 4

摘要

相邻相励磁的序贯吸引-斥力原理对旋转磁阻电机的运行有很大影响。在过去的几十年里,各种研究人员已经发现并解决了这个问题。有效的磁性设计是减少影响的一种方法。然而,由于设计过程涉及较高的解析推导和计算,因此设计过程繁琐且耗时。本文提出了一个简单的图形用户界面工具箱,用于磁阻电机的设计。开发的界面计算了对中、非对中和中间电感值的分析值,使用户可以很容易地解释电感和转矩分布。提出了一种新的分析方法——循环积分法(CIM),并将其用于设计工具箱的性能评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimised toolbox for the design of rotary reluctance motors
Operation of the rotary reluctance machine is highly affected due to the sequential attraction-repulsion principle of the adjacent phase excitation. The problem has been identified and addressed by various researchers in the past decades. Effective magnetic design is one way of minimizing the effect. However it is tedious and time consuming as the design procedure involve higher analytical derivation and calculations. This paper presents a simpler graphical user interface toolbox to use for the design of reluctance motors. The developed interface calculates the analytical values of the aligned, unaligned and intermediate inductance values so that the user can interpret the inductance and torque profile easily. A new analytical method called Cyclic Integration Method (CIM) is proposed and is used for the performance evaluation of the designed tool box.
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