Mechanical Engineering

Internal Force-Coupling Dynamic Suppression Strategy for Redundantly-Actuated Hydraulic Shaking Table

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  • School of Mechatronic Engineering,Harbin Institute of Technology,Harbin 150001,Heilongjiang,China
高长虹( 1987-) ,男,博士生,主要从事并联冗余驱动系统的控制研究. E-mail: my. cool. cn@163. com

Received date: 2014-12-08

  Revised date: 2015-04-05

  Online published: 2015-12-09

Supported by

Supported by the National Natural Science Foundation of China( 51205077, 51475116)

Abstract

When the motion range of redundant shaking table is large,adopting the linearization near the zero position to control the degrees of freedom ( DOF) and suppress internal force coupling can result in large motion errors and poor internal force suppressing performance.In order to solve this problem,a kinematics model and a kinetic model are constructed for a redundantly-actuated hydraulic shaking table of two redundant DOFs and large motion range,and the internal force space structure of the shaking table is analyzed.Then,an internal force-coupling dynamic suppression strategy is proposed on the basis of the real-time solution of internal force space basis.In this strategy,the internal force of the shaking table is reduced by real-time acquiring and dynamically suppressing the force of redundant DOF space.Simulation results show that the proposed strategy can reduce the internal force of redundant shaking table effectively.

Cite this article

GAO Chang-hong CONG Da-cheng YANG Zhi-dong QU Zhi-yong . Internal Force-Coupling Dynamic Suppression Strategy for Redundantly-Actuated Hydraulic Shaking Table[J]. Journal of South China University of Technology(Natural Science), 2016 , 44(1) : 93 -99 . DOI: 10.3969/j.issn.1000-565X.2016.01.014

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