Analysis of torque behavior of permanent magnet synchronous motor in field-weakening operation

A. Ebrahimi, M. Maier, N. Parspour
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引用次数: 5

Abstract

A variety of efficient control strategies for synchronous motors have been proposed in recent years. Many of them use the rotary or stationary two dimensional axes in order to make the control algorithm easier. However, trying to describe the motor behavior using just two axes is either impossible or at least not complete. Neglecting the real flux density distribution of motors, leads even to wrong or at least naive interpretation about the functionality of the machine. In this paper a new approach for understanding the torque development of a permanent magnet synchronous motor in the field weakening region is developed and verified with experimental results. The description of induced voltage and torque using flux density distribution in the air gap offers a deep insight into the functionality and behavior of a electric machine.
永磁同步电动机弱磁场工况转矩特性分析
近年来,人们提出了多种有效的同步电机控制策略。为了使控制算法更容易,它们中的许多都使用旋转或静止的二维轴。然而,试图用两个轴来描述电机的行为是不可能的,或者至少是不完整的。忽略电机的实际磁通密度分布,甚至会导致对机器功能的错误或至少是幼稚的解释。本文提出了一种理解永磁同步电机弱磁场区转矩发展的新方法,并用实验结果进行了验证。利用气隙中的磁通密度分布来描述感应电压和转矩,可以深入了解电机的功能和行为。
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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