Analytical method for the design of the skewed permanent magnet machines of high performance

J. L. C. N. Almeida, T. D. de Souza
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引用次数: 1

Abstract

This work aims to present the design and the evaluation of a standard multi-pole machine with permanent magnets inserted in the rotor by two different geometrical forms: aligned and skewed magnets. The design (new analytical method) was based on a standard 250 W three phase 12-pole induction motor (squirrel cage rotor type), beginning with the original stator constructive data to calculate the magnetic flux density to determine the permanent magnets. In the development of the work, a simple and modular rotor was built reusing the original 12-pole stator (concentrated windings). The machine was evaluated in a laboratory for the purpose of checking the quantity and quality of energy produced with the machine operating as a generator and its start, torque, and performance working as a motor. In conclusion, the modular skewed magnet is an option for electrical machines, for the generation of a reasonable quality, in the context of decentralized generation and a motor with high torque and low energetic consumption.
高性能倾斜永磁电机设计的解析方法
本研究的目的是设计和评估一个标准的多极电机,永磁体以两种不同的几何形式插入转子:对齐和倾斜磁铁。本设计(新的分析方法)是基于一个标准的250w三相12极感应电动机(鼠笼式转子),从原始定子构造数据开始计算磁通密度来确定永磁体。在工作的发展中,一个简单的和模块化的转子是重用原来的12极定子(集中绕组)。该机器在实验室进行了评估,目的是检查机器作为发电机运行时产生的能量的数量和质量,以及作为电动机工作时的启动、扭矩和性能。总之,模块化倾斜磁铁是电机的一种选择,在分散发电和高扭矩低能耗电机的情况下,可以产生合理的质量。
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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