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电液振动台加速度随机振动控制
引用本文:廖洋,范大莽,张博鑫,关广丰,熊伟,王海涛. 电液振动台加速度随机振动控制[J]. 液压与气动, 2021, 0(12): 45-50. DOI: 10.11832/j.issn.1000-4858.2021.12.006
作者姓名:廖洋  范大莽  张博鑫  关广丰  熊伟  王海涛
作者单位:大连海事大学船舶与海洋工程学院, 辽宁大连 116000
基金项目:国家自然科学基金(51675073);中央高校基本科研业务费专项资金(3132019352)
摘    要:随机振动模拟试验通过时域波形再现非平稳的振动环境,广泛应用于各类产品的可靠性检测。电液振动台是大型结构件进行模拟试验的关键设备,在随机振动环境下,传统三状态控制器无法同时消除电液振动台干扰力与模型不确定性的影响,以单轴电液振动台作为控制对象,利用滑模控制策略,抑制电液振动台系统在随机振动环境中不确定干扰力的影响,利用自适应逆控制器补偿模型不确定性问题,实现振动台加速度随机振动控制。通过MATLAB/Simulink对该复合控制策略进行随机振动仿真分析,验证控制策略的有效性。

关 键 词:电液振动台  随机振动  滑模控制  自适应逆控制  干扰力补偿  
收稿时间:2021-03-13

Acceleration Random Vibration Control of Electro-hydraulic Shaking Table
LIAO Yang,FAN Da-mang,ZHANG Bo-xin,GUAN Guang-feng,XIONG Wei,WANG Hai-tao. Acceleration Random Vibration Control of Electro-hydraulic Shaking Table[J]. Chinese Hydraulics & Pneumatics, 2021, 0(12): 45-50. DOI: 10.11832/j.issn.1000-4858.2021.12.006
Authors:LIAO Yang  FAN Da-mang  ZHANG Bo-xin  GUAN Guang-feng  XIONG Wei  WANG Hai-tao
Affiliation:Naval Architecture and Ocean Engineering College, Dalian Maritime University, Dalian, Liaoning 116000
Abstract:Random vibration simulation test reproduces non-stationary vibration environment through time domain waveform, which is widely used in reliability testing of various products. Electro-hydraulic shaking table is the key equipment for simulation test of large structural parts. Under the random vibration environment, the traditional three state controller can't eliminate the electrohydraulic vibration table at the same time interference force and the influence of model uncertainty, based on the uniaxial electrohydraulic vibration table as control object, using the sliding mode control strategy, inhibition of electro-hydraulic shaking table system in the random vibration environment the influence of uncertain disturbance force, using adaptive inverse controller to compensate the model uncertainty problem, realize vibration acceleration random vibration control. The random vibration simulation analysis of the composite control strategy was carried out by MATLAB/Simulink to verify the effectiveness of the control strategy.
Keywords:electro-hydraulic shaking table  random vibration  sliding mode control  adaptive inverse control  disturbance compensation  
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