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Damage identification by response surface based model updating using D-optimal design

机译:通过基于响应面的D最优设计更新模型来进行损伤识别

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摘要

Statistical tools, as well as mathematical ones, have been widely adopted and their performance has been shown in different engineering problems where randomicity usually exists. In the realm of engineering, merging statistical analysis into structural evaluation and assessment will be a tendency in the future. As a combination of mathematical and statistical techniques, response surface methodology has been successfully applied to design optimization, response prediction and model validation. This methodology provides explicit functions to represent the relationships between the inputs and outputs of a physical system, which is also a desirable advantage in damage identification. However, so far little research has been carried out in applying the response surface methodology to structural damage identification. This paper presents a damage identification method achieved by response surface based model updating using D-optimal designs. Compared with some common designs constructing response surfaces, D-optimal designs generally require a minimum number of numerical samples and this merit is quite desirable when analysts cannot obtain enough samples. In this study, firstly D-optimal designs are used to establish response surface models for screening out non-significant updating parameters and then first-order response surface models are constructed to substitute for finite element models in predicting the dynamic responses of an intact or damaged physical system. Three case studies of a numerical beam, a tested reinforced concrete frame and a tested full-scale bridge have been used to verify the proposed method. Physical properties such as Young's modulus and section inertias were chosen as the input features and modal frequency was the only response feature. It has been observed that the proposed method gives enough accuracy in damage prediction of not only the numerical but also the real-world structures with single and multiple damage scenarios, and the first-order response surface models based on the D-optimal criterion are adequate for such damage identification purposes.
机译:统计工具和数学工具已被广泛采用,其性能在通常存在随机性的各种工程问题中得到了证明。在工程领域,将统计分析与结构评估和评估相结合将是未来的趋势。作为数学和统计技术的结合,响应面方法已成功应用于设计优化,响应预测和模型验证。该方法提供了明确的功能来表示物理系统的输入和输出之间的关系,这也是损坏识别中的理想优势。但是,到目前为止,在将响应面方法应用于结构损伤识别方面还很少进行研究。本文提出了一种损伤识别方法,该方法通过使用D最优设计基于响应面的模型更新来实现。与构造响应面的一些常见设计相比,D最优设计通常需要最少数量的数字样本,当分析人员无法获得足够的样本时,此优点非常理想。在这项研究中,首先使用D最优设计来建立响应面模型,以筛选出不重要的更新参数,然后构造一阶响应面模型来代替有限元模型来预测完整或受损的动态响应物理系统。对数字梁,经过测试的钢筋混凝土框架和经过测试的全尺寸桥梁进行了三个案例研究,以验证所提出的方法。选择杨氏模量和截面惯性等物理特性作为输入特征,而模态频率是唯一的响应特征。已经观察到,所提出的方法不仅在数值上而且在具有单个和多个损伤场景的真实结构的损伤预测中都提供了足够的准确度,并且基于D最优准则的一阶响应面模型是足够的用于识别损坏。

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