Design of a mode-based controller for 3-DOF vibration isolation system

M. Hoque, M. Takasaki, Y. Ishino, T. Mizuno
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引用次数: 10

Abstract

This paper presents an active suspension technique for a three-degrees-of-freedom (3-DOF) vibration isolation system using negative stiffness. A mode-based digital controller is designed based on a theoretical model to generate negative stiffness by active suspension. The active suspension mechanism, in conjunction with a conventional spring in series, can generate infinite stiffness against direct disturbances on the isolation table. Three-axis motions of the isolation table in the vertical directions are actively controlled by the proposed system. Experimental results show that the active suspension system using the proposed controller well evaluates and describes the zero-compliance against direct disturbances.
基于模态的三自由度隔振系统控制器设计
提出了一种三自由度负刚度隔振系统的主动悬架技术。在建立主动悬架负刚度理论模型的基础上,设计了一种基于模态的数字控制器。主动悬架机构,与传统的弹簧串联,可以产生无限的刚度对隔离台上的直接干扰。该系统可主动控制隔振台在垂直方向上的三轴运动。实验结果表明,采用该控制器的主动悬架系统能够很好地评估和描述直接扰动下的零顺应性。
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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