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Dynamic displacement tracking of a one-storey frame structure using patch actuator networks: Analytical plate solution and FE validation

机译:使用膜片驱动器网络动态跟踪一层框架结构:分析板解决方案和有限元验证

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The present paper is concerned with the design of a proper patch actuator network in order to track a desired displacement of the sidewalls of a one-storey frame structure; both, for the static and the dynamic case. Weights for each patch of the actuator network found in our previous work were based on beam theory; in the present paper a refinement of these weights by modeling the sidewalls of the frame structure as thin plates is presented. For the sake of calculating the refined weights approximate solutions of the plate equations are calculated by an extended Galerkin method. The solutions based on the analytical plate model are compared with three-dimensional Finite Element results computed in the commercially available code ANSYS. The patch actuator network is put into practice by means of four piezoelectric patches attached to each of the two sidewalls of the frame structures, to which electric voltages proportional to the analytically refined patch weights are applied. Analytical and numerical results coincide very well over a broad frequency range.
机译:本文关注于适当的贴片致动器网络的设计,以跟踪一层框架结构的侧壁的所需位移。无论是静态还是动态情况。在我们先前的工作中发现的每个执行器网络补丁的权重均基于梁理论。在本文中,提出了通过将框架结构的侧壁建模为薄板来改进这些权重的方法。为了计算精确的权重,通过扩展的Galerkin方法计算板方程的近似解。将基于分析板模型的解决方案与以商业代码ANSYS计算的三维有限元结果进行比较。贴片致动器网络是通过四个压电贴片付诸实践的,该四个压电贴片连接到框架结构的两个侧壁中的每个侧壁,并向该压电贴片施加与分析精确的贴片重量成比例的电压。在较宽的频率范围内,分析和数值结果非常吻合。

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