土木工程学报  2020, Vol. 53 Issue (S2): 233-239    
  结构工程 本期目录 | 过刊浏览 | 高级检索 |
精密仪器隔减振平台振动控制效应分析
朱俊涛1 赵奎1 邹旭岩2 黄光辉3 钱辉1
1. 郑州大学,河南郑州450001;2. 郑州工程技术学院,河南郑州450044;
3. 中国通信建设集团设计院有限公司第四分公司,河南郑州450001
Analysis of vibration control effect of isolation platform for the precision instrument
Zhu Juntao1 Zhao Kui1 Zou Xuyan2 Huang Guanghui3 Qian Hui1
1. Zhengzhou University, Zhengzhou 450001, China; 2. Zhengzhou Institute of Technology, Zhengzhou 450044, China;
3. The Fourth Branch of China Communication Construction Group Design Institute Co. , Ltd. , Zhengzhou 450001, China
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摘要  为解决宽频激励(0~100Hz)对精密仪器设备正常工作带来的振动问题,采用研制的磁流变弹性体(magnetorheological elastomers,简称MRE)隔减振装置和高耗能隔振支座对精密平台实施振动控制。提出半主动控制装置与被动控制装置相结合的混合控制方案,结合各减振装置力学模型及平台运动姿态分析,建立“七自由度”的隔减振平台模型及其运动方程;设计与平台振动控制方案相适应的模糊控制器,并利用SIMULINK仿真软件对所建立的精密仪器隔减振平台进行动力仿真分析。结果表明:平台质心处竖向Z、绕X轴向及绕Y轴向的加速度与功率谱幅值显著降低,加速度峰值与均方根控制效果可达80%,控制效果显著。
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朱俊涛 赵奎 邹旭岩 黄光辉 钱辉
关键词 振动控制 精密平台 磁流变弹性体 SIMULINK 仿真模拟    
Abstract:In order to solve the vibration problem caused by the wide-band excitation (0-100 Hz) for the normal operation of precision instruments and equipment, the developed magnetorheological elastomers (MRE) vibration isolation device and high energy dissipation vibration isolation support were adopted to control the vibration of the precision platform. A hybrid control scheme combining a semi-active control device and a passive control device was proposed. A “ seven degrees of freedom ” vibration isolation platform model and its motion equation were established through combining with the mechanical model of each vibration reduction device with the analysis of the platforms motion attitude. A fuzzy controller being fit for the platform vibration control scheme was designed, and the dynamic simulation analysis of the established precision instrument vibration isolation platform was carried out by using SIMULINK simulation software. The results show that the amplitude of acceleration and power spectrum in vertical Z, around X axis and around Y axis at the center of mass of the platform is significantly reduced, and the peak acceleration and root mean square control effect can reach 80%, and the control effect is remarkable.
Key wordsprecision platform    vibration control     magnetorheological elastomer     SIMULINK    simulation
    
引用本文:   
朱俊涛 赵奎 邹旭岩 黄光辉 钱辉. 精密仪器隔减振平台振动控制效应分析[J]. 土木工程学报, 2020, 53(S2): 233-239.
Zhu Juntao Zhao Kui Zou Xuyan Huang Guanghui Qian Hui. Analysis of vibration control effect of isolation platform for the precision instrument. 土木工程学报, 2020, 53(S2): 233-239.
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