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Calculation of the Vibration Activity of Design Elements of a Synchronous Impact Electromagnetic Machine with a Striker Inertial Reversal
Russian Electrical Engineering Pub Date : 2021-08-31 , DOI: 10.3103/s1068371221060043
L. A. Neyman 1 , V. Yu. Neyman 1
Affiliation  

Abstract

In this paper, we consider vibration processes in the design of an improved synchronous electromagnetic machine. A mathematical model of the dynamic state of the machine in the form of a system of differential equations is obtained as a result of joint solution of the equations of the electromagnetic state and the translational motion of the structural elements of the multimass mechanical system. The main calculations were performed in MATLAB/Simulink using structural modeling methods. On the basis of the simulation results, time diagrams of longitudinal oscillations of inertial masses were obtained, taking into account the effect of the impact load. The fundamental possibility of further use of the model for optimization calculations to improve the characteristics of synchronous electromagnetic machines, as well as for design problems, is shown.



中文翻译:

具有冲击惯性反转的同步冲击电磁机设计元件的振动活动计算

摘要

在本文中,我们在改进的同步电磁机的设计中考虑了振动过程。作为多质量机械系统的电磁状态方程和结构元件的平移运动的联合求解的结果,获得了微分方程组形式的机器动态状态的数学模型。主要计算是在 MATLAB/Simulink 中使用结构建模方法进行的。在模拟结果的基础上,考虑了冲击载荷的影响,得到了惯性质量纵向振荡的时间图。显示了进一步使用该模型进行优化计算以改善同步电磁电机特性以及解决设计问题的基本可能性。

更新日期:2021-09-01
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