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Hybrid vibration control by piezolelectrics with the optimal resistance and the optimal control theory

机译:用最佳电阻和最优控制理论的压电电和最优控制理论的混合振动控制

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This paper proposes the use of the optimal resistance and LQ optimum contorl theory as the method of designing the active-passive hybrid vibration control of structures. Previous studies have shown that piezoleelctric materials convenrt mechanical energy into electricla energy, and this electrical energy may be dissipated maximally through a connected optimal resistance. used in conjunction with an active control circuit to the optimal resistance, the hybrid control can be applied, which combines the advantages of passive and active control. In the other words, the optimal resistance provides passive damping to the structure, while the LQ controller improvesthe performance of the passive control system. However, fail-safe is always guaranteed for the hybrid control system by the passive damping. To apply the LQ control thoey, state space models of the coupling system of structure with piezolelectric elements and resistances are formulated. The state space model cescribes the dynamic coupling between a structure and resistances through the pizoelectric effect. Therefore, its active control formula can be obtaiend in a very simple manner. Lastly, the theoretical calculation of a cantilevered beam is carried out to demonstrate the effectiveness of the concept.
机译:本文提出了利用最优电阻和LQ最佳Contorl理论作为设计结构主动无源混合振动控制的方法。以前的研究表明,压电材料齐全的机械能量进入电动机能量,并且这种电能可以通过连接的最佳阻力最大地散发。结合有源控制电路与最佳电阻一起使用,可以应用混合控制,这相结合了被动和主动控制的优点。换句话说,最佳电阻为结构提供了被动阻尼,而LQ控制器的升级性能是无源控制系统的性能。然而,通过被动阻尼始终保证混合控制系统的故障安全。为了应用LQ控制,配制了具有压电电元件和电阻的结构耦合系统的状态空间模型。状态空间模型通过滤波效应来截止结构和电阻之间的动态耦合。因此,其活跃的控制公式可以以非常简单的方式是孤独的。最后,进行了悬臂梁的理论计算以证明概念的有效性。

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