Differential magnetic anisotropy - prerequisite for rotor position detection of PM-synchronous machines with signal injection methods

I. Hahn
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引用次数: 34

Abstract

It is well known that rotor position detection at very low speed and at standstill is only possible with signal injection methods, because at vanishing speed the different methods using the induced voltage (back EMF methods) are not suitable. All signal injection methods need as a prerequisite the existence of a magnetic anisotropy of the machine over a wide range of operating conditions. This document presents first the basic theory of electrical machines to derive the needed machine properties which are the prerequisite for rotor position detection at standstill with signal injection methods. Different machine designs with concentrated windings will be analyzed in view of the differential magnetic anisotropy by means of finite element field calculations. Results from prototype measurements will also be presented and compared with the theoretical findings.
差分磁各向异性——用信号注入法检测永磁同步电机转子位置的先决条件
众所周知,在非常低的速度和静止状态下,转子位置检测只能使用信号注入方法,因为在消失速度下,使用感应电压(反电动势方法)的不同方法是不合适的。所有的信号注入方法都需要在广泛的工作条件下,机器的磁各向异性的存在作为先决条件。本文首先介绍电机的基本理论,推导出用信号注入法进行静止状态下转子位置检测所需的电机特性。从磁各向异性的差异出发,采用有限元场计算的方法,对不同的集中绕组设计进行分析。原型测量的结果也将与理论结果进行比较。
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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