LQR CONTROL OF THE NODAL DISPLACEMENTS IN A SPATIAL TRUSS WITH ACTIVE PIEZOELECTRIC MEMBERS

D. Grzybek
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Abstract

The ability to damp vibrations is important in many structures, in which trusses are one of the main elements. The increase of the damping of the truss vibrations is possible by passive means or by the use of an active vibration control system integrated with the structure of the truss. The control system can affect the truss structure by specially designed actuators, which generate active forces in appropriate nodes of the truss. Piezoelectrics can be used to build such actuators. The design of the control system encompasses the structure of the actuating active truss member, the spacing of active members inside the truss structure, the design of the control algorithm and the spacing of measurement sensors generating feedback signals. In this article, the application of the LQR algorithm to the node displacement control in a spatial truss has been presented. The spacing of active members in the truss structure on the basis of the force distribution in the truss members has been suggested.
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主动压电构件空间桁架节点位移的LQR控制
在许多结构中,阻尼振动的能力是很重要的,其中桁架是主要元素之一。增加桁架振动的阻尼可以通过被动手段或使用与桁架结构相结合的主动振动控制系统来实现。控制系统通过特殊设计的执行机构对桁架结构进行控制,在桁架的适当节点产生主动力。压电材料可以用来制造这样的驱动器。控制系统的设计包括驱动主动桁架构件的结构、桁架结构内主动构件的间距、控制算法的设计以及产生反馈信号的测量传感器的间距。本文介绍了LQR算法在空间桁架节点位移控制中的应用。根据桁架构件的受力分布,提出了桁架结构主动构件的间距。
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来源期刊
International Journal of Mechanics and Control
International Journal of Mechanics and Control Engineering-Computational Mechanics
CiteScore
2.10
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