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首页> 外文期刊>International Journal of Solids and Structures >Identification of electromechanical properties of piezoelectric structures through evolutionary optimisation techniques
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Identification of electromechanical properties of piezoelectric structures through evolutionary optimisation techniques

机译:通过进化优化技术识别压电结构的机电性能

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摘要

In this paper a non-destructive method to predict the whole three-dimensional set of electromechanical properties of active plate structures is presented. Since the elastic properties of the patches, along with their piezoelectric properties, have significant effect on the dynamic response of the global structure, the inverse problem of the identification of those properties is stated as a constrained minimisation problem of an error function expressing the difference between the measured eigenfrequencies and the corresponding numerical values. Thus, the adopted strategy relies on the dynamic response of the structure in terms of undamped natural frequencies and makes use of a global optimisation technique. To this purpose, a 3D finite element model is used to model the piezoelectric sensors, while an improved genetic algorithm is used as the optimisation tool in order to perform the solution search. The results are demonstrated through a simulated test case, that shows the accuracy of the method.
机译:本文提出了一种非破坏性方法来预测有源板结构的机电特性的整个三维集合。由于贴片的弹性特性及其压电特性对整体结构的动态响应具有重大影响,因此将这些特性的识别反问题称为误差函数的约束最小化问题,表示误差之间的差异。测量的本征频率和相应的数值。因此,所采用的策略依赖于结构在无阻尼固有频率方面的动态响应,并利用了全局优化技术。为此,使用3D有限元模型为压电传感器建模,同时使用改进的遗传算法作为优化工具以执行解搜索。结果通过模拟测试案例进行了演示,该案例说明了该方法的准确性。

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