A Mathematical Model of Transients in a Cylindrical Linear Motor with Reciprocating Motion

Q3 Engineering Russian Electrical Engineering Pub Date : 2024-01-30 DOI:10.3103/s1068371223110172
N. V. Zhuzhgov, A. D. Korotaev, E. A. Chabanov
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Abstract

A mathematical description of transients in linear synchronous motors with permanent magnets is presented, based on the Park–Gorev differential equations applied to a synchronous motor of rotational action, transformed taking into account the necessary additions. A mathematical model in the MATLAB/Simulink software environment of a cylindrical linear synchronous motor designed to study transients during translational and reciprocating motion of a secondary element is considered. The most effective variant of the calculated motor module for the executive mechanism of the plane grinding machine is determined.

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带往复运动的圆柱直线电机瞬态数学模型
摘要 根据应用于旋转同步电机的 Park-Gorev 微分方程,并考虑到必要的增量,对带有永磁体的线性同步电机中的瞬态进行了数学描述。在 MATLAB/Simulink 软件环境中设计了一个圆柱形线性同步电机数学模型,用于研究二次元平移和往复运动过程中的瞬态。确定了用于平面磨床执行机构的计算电机模块的最有效变体。
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来源期刊
Russian Electrical Engineering
Russian Electrical Engineering Engineering-Electrical and Electronic Engineering
CiteScore
1.50
自引率
0.00%
发文量
70
期刊介绍: Russian Electrical Engineering  is a journal designed for the electrical engineering industry and publishes the latest research results on the design and utilization of new types of equipment for that industry and on the ways of improving the efficiency of existing equipment.
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