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Use of response surface metamodels for identification of stiffness and damping coefficients in a simple dynamic system

机译:使用响应表面元模型识别简单动力系统中的刚度和阻尼系数

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摘要

Metamodels have been used with success in many areas of engineering for decades but only recently in the field of structural dynamics. A metamodel is a fast running surrogate that is typically used to aid an analyst or test engineer in the fast and efficient exploration of the design space. Response surface metamodels are used in this work to perform parameter identification of a simple five degree of freedom system, motivated by their low training requirements and ease of use. In structural dynamics applications, response surface metamodels have been utilized in a forward sense, for activities such as sensitivity analysis or uncertainty quantification. In this study a polynomial response surface model is developed, relating system parameters to measurable output features. Once this relationship is established, the response surface is used in an inverse sense to identify system parameters from measured output features. A design of experiments is utilized to choose points, representing a fraction of the full design space of interest, for fitting the response surface metamodel. Two parameters commonly used to characterize damage in a structural system, stiffness and damping, are identified. First changes are identified and located with success in a linear 5DOF system. Then parameter identification is attempted with a nonlinear 5DOF system and limited success is achieved. This work will demonstrate that use of response surface metamodels in an inverse sense shows promise for use in system parameter identification for both linear and weakly nonlinear systems and that the method has potential for use in damage identification applications.
机译:元模型已经在许多工程领域成功使用,但直到最近才在结构动力学领域使用。元模型是一种快速运行的代理,通常用于帮助分析师或测试工程师快速高效地探索设计空间。响应面元模型在这项工作中用于执行简单的五自由度系统的参数识别,这是由于它们的培训要求低且易于使用。在结构动力学应用中,已将响应面元模型以正向方式用于诸如敏感性分析或不确定性量化之类的活动。在这项研究中,开发了多项式响应面模型,将系统参数与可测量的输出特征相关联。一旦建立了这种关系,就可以反面使用响应面从测量的输出特征中识别系统参数。利用实验设计来选择点,以表示感兴趣的整个设计空间的一部分,以拟合响应表面元模型。确定了通常用于表征结构系统损伤的两个参数:刚度和阻尼。在线性5DOF系统中成功识别并确定了第一个更改。然后,尝试使用非线性5DOF系统进行参数识别,但取得的成功有限。这项工作将证明,在相反的意义上使用响应面元模型显示出有望用于线性和弱非线性系统的系统参数识别,并且该方法具有用于损伤识别应用的潜力。

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