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VIBRATION SUPPRESSION USING PIEZOELECTRIC ELEMENTS: MODEL DEVELOPMENT FOR CONTROL APPLICATIONS

机译:使用压电元件的振动抑制:控制应用的模型开发

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Smart structures containing piezoelectric elements used for vibration suppression, are finding increasing applications in almost all industries. A smart structure always includes a controller. In order to implement and simulate the controller it is useful to possess a dynamic model of it that includes structural and smart properties of the materials involved. The dynamic model can be a state-space model or a transfer function. In this paper a methodology to obtain the dynamic model is presented. It was necessary to use two software platforms: the finite element software (SAMCEF), where the combined structure is modeled, and the control specialized software (MATLAB/Simulink). There are presented two methods of finite element analysis of the smart structure. The first method includes in the same model the plate and the patches (with their electrical properties). In the second method the plate and the patches are modeled separately and assembled in MATLAB using the dynamic substructuring method. The problem of actuators and sensor placement for the active vibration control of smart structures is also addressed.
机译:含有用于振动抑制的压电元件的智能结构,在几乎所有行业中都在寻找越来越多的应用。智能结构始终包括控制器。为了实现和模拟控制器,它非常有用的是它的动态模型,包括所涉及的材料的结构和智能特性。动态模型可以是状态空间模型或传递函数。在本文中,提出了一种获得动态模型的方法。有必要使用两个软件平台:建模组合结构的有限元软件(SAMCEF),以及控制专业软件(MATLAB / SIMULINK)。介绍了两种有限元分析方法的智能结构。第一方法包括板和贴片的相同模型(其电性能)。在第二种方法中,使用动态子结构方法,在MATLAB中单独建模并贴片。还寻址了智能结构的主动振动控制的致动器和传感器放置的问题。

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