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A Position Detection Strategy for Sensorless Surface Mounted Permanent Magnet Motors at Low Speed Using Transient Finite-Element Analysis

机译:基于瞬态有限元分析的无传感器表面安装永磁电动机低速位置检测策略

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摘要

A novel solution for sensorless starting of conventional surface mounted PM motors is proposed. The strategy of the proposed scheme is to creatively formulate a combination of electromagnetic field with transient finite element method (FEM). The proposed solution is an improvement over and above conventional methods in that it is based on rotor position detection at zero speed with high frequency signal injection and back EMF detection. Previous researches tend to consider the induced signal from different winding terminals independently. The proposed methodology however exploits the induced voltage signals from two of the motor winding terminals, using the third terminal as the signal injection point. The strategy also eliminates the process of polarity tests. The relationship between the dependency of induced signals and the rotor position angle is summarized, and a simple motor starting scheme is proposed. Effects arising from the transient characteristics of the injected/induced signals are fully addressed using FEM.
机译:提出了一种用于常规表面安装永磁电机的无传感器启动的新颖解决方案。该方案的策略是创造性地将电磁场与瞬态有限元方法(FEM)结合起来。所提出的解决方案是对传统方法的改进,因为它基于零速转子位置检测以及高频信号注入和反电动势检测。先前的研究倾向于独立地考虑来自不同绕组端子的感应信号。然而,所提出的方法利用第三端作为信号注入点来利用来自两个电动机绕组端的感应电压信号。该策略还消除了极性测试的过程。总结了感应信号的依赖性与转子位置角之间的关系,并提出了一种简单的电动机启动方案。使用FEM可以完全解决由注入/感应信号的瞬态特性引起的影响。

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