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Sizing optimization of piezoelectric smart structures with meta-modeling techniques for dynamic applications

机译:用于动态应用的元建模技术优化压电智能结构的尺寸

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摘要

This article shows an efficient method with a high industrial applicability to design piezoelectric smart structures for dynamic applications. This method allows sizing structures with requirements of dynamic displacements. The first step of this method consists in extracting dynamic reduced models from Finite Element simulations which will enable us to obtain a model for any structure, whatever its complexity, as opposed to analytical modeling methods. These models are computed for a set of design parameters. Then a meta-model, which is a simplified descriptive model of other models, is computed as a surface response model that expresses the design objectives and constraints as a function of the design variables. The combination of the results stemming from the meta-model allows working out the optimal values of the design parameters. The main advantage of the proposed method is to enable the quick design exploration of structures. As an example, the method is applied to a flexible structure whose dynamic displacements need to be controlled in bending and twisting. The theoretical results are validated in the end by experiments.
机译:本文展示了一种具有高工业实用性的有效方法,可以为动态应用设计压电智能结构。这种方法可以确定具有动态位移要求的结构的尺寸。该方法的第一步是从有限元模拟中提取动态简化模型,这将使​​我们能够获得任何结构的模型,无论其结构如何复杂,与分析建模方法相比都是如此。这些模型是针对一组设计参数计算的。然后,将作为其他模型的简化描述模型的元模型作为表面响应模型进行计算,该模型将设计目标和约束表达为设计变量的函数。来自元模型的结果的组合允许计算出设计参数的最佳值。所提出的方法的主要优点是使结构的快速设计探索成为可能。作为示例,该方法被应用于柔性结构,该柔性结构的弯曲和扭曲中的动态位移需要被控制。最后通过实验验证了理论结果。

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