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Finite element model updating of a cable-stayed bridge using metaheuristic algorithms combined with Morris method for sensitivity analysis

机译:使用Moraheuristic算法与Morris方法进行敏感性分析的有限元模型更新

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摘要

Although model updating has been widely applied using a specific optimization algorithm with a single objective function using frequencies, mode shapes or frequency response functions, there are few studies that investigate hybrid optimization algorithms for real structures. Many of them did not take into account the sensitivity of the updating parameters to the model outputs. Therefore, in this paper, optimization algorithms and sensitivity analysis are applied for model updating of a real cable-stayed bridge, i.e., the Kien bridge in Vietnam, based on experimental data. First, a global sensitivity analysis using Morris method is employed to find out the most sensitive parameters among twenty surveyed parameters based on the outputs of a Finite Element (FE) model. Then, an objective function related to the differences between frequencies, and mode shapes by means of MAC, COMAC and eCOMAC indices, is introduced. Three metaheuristic algorithms, namely Gravitational Search Algorithm (GSA), Particle Swarm Optimization algorithm (PSO) and hybrid PSOGSA algorithm, are applied to minimize the difference between simulation and experimental results. A laboratory pipe and Kien bridge are used to validate the proposed approach. Efficiency and reliability of the proposed algorithms are investigated by comparing their convergence rate, computational time, errors in frequencies and mode shapes with experimental data. From the results, PSO and PSOGSA show good performance and are suitable for complex and time-consuming analysis such as model updating of a real cable-stayed bridge. Meanwhile, GSA shows a slow convergence for the same number of population and iterations as PSO and PSOGSA.
机译:尽管使用频率,模式形状或频率响应函数使用单个物镜函数的特定优化算法已广泛应用模型更新,但是很少研究用于真实结构的混合优化算法。其中许多人没有考虑更新参数对模型输出的敏感性。因此,在本文中,基于实验数据,应用了优化算法和敏感性分析,用于模型更新,即越南的Kien Bridge,即越南的Kien桥。首先,采用莫里斯方法的全局敏感性分析来基于有限元(FE)模型的输出来找出二十个受测量参数中最敏感的参数。然后,介绍了与频率之间的差异相关的目标函数,以及通过MAC,COMAC和ECOMAC指数的差异。应用三种成群质算法,即重力搜索算法(GSA),粒子群优化算法(PSO)和混合PSOGSA算法,以最大限度地减少模拟和实验结果之间的差异。实验室管道和KIEN桥用于验证所提出的方法。通过比较它们的收敛速率,计算时间,频率和模式形状与实验数据来研究所提出的算法的效率和可靠性。从结果,PSO和PSOGSA表现出良好的性能,适用于复杂和耗时的分析,例如型号更新真正的斜拉桥。同时,GSA显示了与PSO和PSOGSA相同数量的人口和迭代速度缓慢的收敛性。

著录项

  • 来源
    《Smart structures and systems》 |2020年第4期|451-468|共18页
  • 作者单位

    Univ Ghent Fac Engn & Architecture Technol Pk B-9052 Ghent Belgium|Univ Transport & Commun Fac Civil Engn Campus Ho Chi Minh 450-451 Le Van Viet Dist 9 Ho Chi Minh Vietnam;

    Univ Ghent Fac Engn & Architecture Technol Pk B-9052 Ghent Belgium;

    Katholieke Univ Leuven Dept Civil Engn B-3001 Leuven Belgium;

    Univ Transport & Commun Fac Civil Engn 03 Cau Giay Hanoi Vietnam;

    Ton Duc Thang Univ Div Computat Mech 19 Nguyen Huu Tho Dist 7 Ho Chi Minh Vietnam|Ton Duc Thang Univ Fac Civil Engn 19 Nguyen Huu Tho Dist 7 Ho Chi Minh Vietnam;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Kien bridge; PSO; GSA; PSOGSA; global sensitivity analysis;

    机译:Kien Bridge;PSO;GSA;PSOGSA;全球敏感性分析;

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