Vibration Control Analysis System utilizing a Mechanical Dynamics Model.

H. Hamamatsu, T. Sumimoto, Y. Araki
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引用次数: 2

Abstract

Speedy and accurate positioning is important for mechatronics products. It is necessary for optimum design to consider mechanical vibration and control. Control designs with mechanical vibrations have two problems : One is a difficulty to input suitable vibration characteristics, the other is an increase in the degree of an equation. Vibration characteristics influence system stability and collocation. This paper describes the analysis system for vibration control using FEM analysis. Mechanical vibrations are analyzed by FEM easily. This analysis system reads modal parameters from FEM output file and control block diagrams are input in dialogue. The analysis results are frequency response, step response and root locus. So it is possible to achieve optimum design for control with a mechanical system having multi-degrees of freedom.
基于机械动力学模型的振动控制分析系统。
快速准确的定位对于机电一体化产品来说是非常重要的。在优化设计中必须考虑机械振动及其控制。机械振动控制设计有两个问题:一是难以输入合适的振动特性,二是方程的阶数增加。振动特性影响系统的稳定性和配置。本文介绍了基于有限元分析的振动控制分析系统。采用有限元法对机械振动进行分析比较方便。该分析系统从有限元输出文件中读取模态参数,并在对话框中输入控制框图。分析结果包括频率响应、阶跃响应和根轨迹。因此,对具有多自由度的机械系统进行控制优化设计是可能的。
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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