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A multistage FE updating procedure for damage identification in large-scale structures based on multiobjective evolutionary optimization

机译:基于多目标进化优化的大型结构损伤识别的多阶段有限元更新程序

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摘要

This study aims to develop a multistage scheme for damage detection for large structures based on experimental modal data and on finite element (FE) model updating methods applied on simple FE models. In the first stage, occurrence and approximate location of damage is performed by using damage functions in order to decrease the number of parameters to be updated. The goal in the second stage is to identify the specific damaged members and damage extent by considering only the members belonging to the regions detected as damage in the first stage. To improve identification, the optimization procedure is formulated in a multiobjective context solved by using evolutionary algorithms. Modal flexibilities and a damage location criterion dependent on frequencies and mode shapes are used as two objective functions of the multiobjective problem. The proposal is implemented in simulated case studies and in a case study of a real bridge experimentally tested with successful results.
机译:本研究旨在基于实验模态数据和应用于简单有限元模型的有限元(FE)模型更新方法,为大型结构的损伤检测开发多阶段方案。在第一阶段,通过使用损坏函数来执行损坏的发生和大致定位,以减少要更新的参数的数量。第二阶段的目标是通过仅考虑属于第一阶段中检测到的损坏区域的成员来确定特定的损坏成员和损坏程度。为了提高识别度,使用进化算法在多目标环境中制定了优化程序。取决于频率和模态形状的模态柔韧性和损伤定位准则被用作多目标问题的两个目标函数。该提案在模拟案例研究中以及在通过实际测试以成功结果进行测试的真实桥梁的案例研究中得以实施。

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