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首页> 外文期刊>Electrical engineering in Japan >New Dynamic Self-Consistent Mathematical Model and Torque Characteristics of Permanent-Magnet Synchronous Motors with Magnetic Cross-Coupling
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New Dynamic Self-Consistent Mathematical Model and Torque Characteristics of Permanent-Magnet Synchronous Motors with Magnetic Cross-Coupling

机译:磁交叉耦合的永磁同步电动机新的动态自洽数学模型和转矩特性

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摘要

This paper proposes a new dynamic mathematical model of permanent-magnet synchronous motors (PMSMs) with magnetic cross-coupling and presents a new analysis of the torque characteristics of the motors. Generally speaking, dynamic mathematical models used for the design and analysis of PMSM control systems must consist of three basic equations that describe the main motor characteristics as an electrical circuit, torque generator, and electromechanical energy converter. In order to obtain reasonably compact models, some characteristics have to be approximated. However, in the case where the approximations used in the three basic equations are different from each other, the dynamic mathematical model often loses self-consistency and becomes self-contradictory. The proposed model, which takes the magnetic cross-coupling into account, is self-consistent and compact, and its effectiveness is validated by experimental data. Using the self-consistency and compactness, this study presents a new analysis of the torque characteristics of PMSMs, focusing on efficient torque generation.
机译:本文提出了一种具有磁交叉耦合的永磁同步电动机(PMSM)的动态数学模型,并对电动机的转矩特性进行了新的分析。一般而言,用于PMSM控制系统设计和分析的动态数学模型必须由三个基本方程组成,这些基本方程描述了电机的主要特性,例如电路,转矩发生器和机电能量转换器。为了获得合理的紧凑模型,必须近似一些特征。但是,在三个基本方程式中使用的近似值互不相同的情况下,动态数学模型通常会失去自洽性并变得自相矛盾。该模型考虑了磁交叉耦合,具有自洽性和紧凑性,并通过实验数据验证了其有效性。利用自洽性和紧凑性,本研究提出了对永磁同步电动机转矩特性的新分析,重点是有效产生转矩。

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