隔振
解耦(概率)
控制理论(社会学)
振动
振动控制
动力减振器
分离(微生物学)
对角线的
工程类
模糊控制系统
计算机科学
模糊逻辑
控制工程
声学
控制(管理)
数学
物理
几何学
微生物学
人工智能
生物
作者
Bing Zhang,Yan Liu,Longtao Qiu,Hua Huang,Jiamin Cai,Xinlong Yang,Tang Shao-dong
出处
期刊:Recent Patents on Mechanical Engineering
[Bentham Science Publishers]
日期:2022-06-01
卷期号:15 (3): 302-318
标识
DOI:10.2174/2212797615666220304120326
摘要
Background: The vibration isolation platform (VIP) can greatly reduce the risk of damage to dynamic equipment caused by external vibration interference and provide the most stable and reliable working environment for dynamic equipment. Objective: Aiming at the problems of small vibration isolation dimension, low bearing capacity, serious motion coupling, and narrow vibration isolation bandwidth in the field of vibration isolation of dynamic load equipment, a hydraulic redundant six degrees of freedom parallel vibration isolation platform (PVIP) with active and passive composite vibration isolation support is proposed. Methods: The dynamic coupling model of active and passive hybrid vibration isolation (APHVI) of redundant PVIP is established, and the matrix diagonal decoupling control strategy and fuzzy PI control theory are combined. Analysis of passive vibration isolation performance and APHVI performance of VIP is done. Results: The simulation results show that the effect of APHVI based on fuzzy PI decoupling control is better than that of passive vibration isolation and matrix diagonal decoupling control. Conclusion: Fuzzy PI control can effectively attenuate more than 98 % of the disturbance, significantly improve the vibration isolation performance and decoupling effect of the platform, and expand the effective vibration isolation bandwidth.
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