Fast sizing and simulation of multipole radial flux permanent magnet synchronous machines

I. Elósegui, I. Egaña, L. Fontan, A. Garcia Rico, M. Martínez-Iturralde
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引用次数: 2

Abstract

This paper provides an automatic tool for the sizing, calculation, optimization and simulation of multipole radial flux permanent magnet synchronous machines (RPMSM). Only four parameters must be defined to obtain the machine: output power, rated voltage, frequency and number of pole pairs. firstly, geometric, electric and magnetic characteristics are obtained. Secondly, an accurate calculation of the sized machine is done. In order to check the influence in machine performance any variable can be modified in optimization loops. All this procedure has been implemented using MATLABreg obtaining different prototypes in a very short time, reducing significantly RPMSM design process. The obtained geometry is exported to a finite element method software where the geometry, mesh, material characteristics and electrical circuit are automatically generated. Finally all the procedure has been contrasted and validated through the construction and testing of a laboratory prototype.
多极径向磁通永磁同步电机的快速定径与仿真
本文为多极径向磁通永磁同步电机(RPMSM)的定径、计算、优化和仿真提供了一个自动化工具。只需定义四个参数即可获得机器:输出功率、额定电压、频率和极对数。首先,得到几何特性、电特性和磁特性。其次,对机床尺寸进行了精确的计算。为了检查对机器性能的影响,任何变量都可以在优化循环中修改。所有这些程序都是使用matlab实现的,在很短的时间内获得不同的原型,大大减少了RPMSM的设计过程。将得到的几何图形导出到有限元方法软件中,在该软件中自动生成几何图形、网格、材料特性和电路。最后,通过实验室样机的构建和测试,对所有程序进行了对比和验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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