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Design and robust optimal control of smart beams with application on vibrations suppression

机译:智能梁的设计及鲁棒最优控制在振动抑制中的应用

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摘要

This paper presents the design of a vibration control mechanism for a beam with bonded piezoelectric sensors and actuators and an application of the arising smart structure for vibrations suppression. The mechanical modeling of the structure and the subsequent finite element approximation are based on Hamilton's principle and classical engineering theory for bending of beams in connection with simplified modeling of piezoelectric sensors and actuators. Two control schemes LQR and H_2 are considered. The latter robust controller takes into account uncertainties of the dynamical system and moreover incompleteness of the measured information, it therefore leads to applicable design of smart structures. The numerical simulation shows that sufficient vibration suppression can be achieved by means of the proposed general methods.
机译:本文介绍了带有压电传感器和执行器的梁的振动控制机构的设计,以及由此产生的智能结构在振动抑制中的应用。结构的机械建模以及随后的有限元逼近基于汉密尔顿原理和经典工程理论,结合压电传感器和执行器的简化建模来进行梁的弯曲。考虑两个控制方案LQR和H_2。后者的鲁棒控制器考虑了动力学系统的不确定性以及测量信息的不完整性,因此导致了智能结构的适用设计。数值模拟表明,通过提出的通用方法可以实现足够的振动抑制。

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