Dynamic Analysis of the Tubular Linear Actuator With Permanent Magnets

K. Just, P. Piskur, M. Zokowski
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Abstract

In this paper a results of a transient analysis of the linear actuator is presented. The linear actuator consist of the three cylindrical unmovable coils surrounded by a soft ferromagnetic case, a runner made from sequence of ferromagnetic and permanent magnet rings. The model of the linear actuator was implemented into two software: the Comsol Multiphysics and the Matlab-Simulink. Both environments are commonly used in simulation analysis, but the first one uses Finite Element Method (FEM) and the second one uses Ordinary Differential Equations (ODE). Moreover, the dynamic model was analysed in Matlab-Simulink software with value of electromagnetic phenomena implemented from Comsol Multiphysics. Comparison was made due to the time needed for calculation, accuracy of the simulation model as well as the as utility for further optimization process.
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永磁体管状线性执行器的动力学分析
本文给出了线性执行器的瞬态分析结果。线性致动器由三个圆柱形不可移动线圈组成,线圈周围有一个软铁磁外壳,一个由铁磁和永磁环组成的转轮。线性执行器的模型被实现为两个软件:Comsol Multiphysics和Matlab Simulink。这两种环境通常用于模拟分析,但第一种环境使用有限元法(FEM),第二种环境使用常微分方程(ODE)。此外,利用Comsol Multiphysics实现的电磁现象值,在Matlab Simulink软件中对动力学模型进行了分析。由于计算所需的时间、模拟模型的准确性以及对进一步优化过程的实用性,进行了比较。
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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