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首页> 外文期刊>Journal of Sound and Vibration >Sensitivity-based finite element model updating using constrained optimization with a trust region algorithm
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Sensitivity-based finite element model updating using constrained optimization with a trust region algorithm

机译:基于信任域算法的约束优化基于灵敏度的有限元模型更新

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The use of changes in dynamic system characteristics to detect damage has received considerable attention during the last years. Within this context, FE model updating technique, which belongs to the class of inverse problems in classical mechanics, is used to detect, locate and quantity damage. In this study, a sensitivity-based finite element (FE) model updating scheme using a trust region algorithm is developed and implemented in a complex structure. A damage scenario is applied on the structure in which the stiffness values of the beam elements close to the beam-column joints are decreased by stiffness reduction factors. A worst case and complex damage pattern is assumed such that the stiffnesses of adjacent elements are decreased by substantially different stiffness reduction factors. The objective of the model updating is to minimize the differences between the eigenfrequency and eigenmodes residuals. The updating parameters of the structure are the stiffness reduction factors. The changes of these parameters are determined iteratively by solving a nonlinear constrained optimization problem. The FE model updating algorithm is also tested in the presence of two levels of noise in simulated measurements. In all three cases, the updated MAC values are above 99% and the relative eigenfrequency differences improve substantially after model updating. In cases without noise and with moderate levels of noise; detection, localization and quantification of damage are successfully accomplished. In the case with substantially noisy measurements, detection and localization of damage are successfully realized. Damage quantification is also promising in the presence of high noise as the algorithm can still predict 18 out of 24 damage parameters relatively accurately in that case. (c) 2007 Elsevier Ltd. All rights reserved.
机译:在过去的几年中,使用动态系统特性的变化来检测损坏已经引起了广泛的关注。在这种情况下,FE模型更新技术属于经典力学中的反问题类别,用于检测,定位和量化损伤。在这项研究中,开发了一种使用信任域算法的基于灵敏度的有限元(FE)模型更新方案,并在复杂的结构中实现了该方案。在结构上施加一种损坏方案,在该结构中,靠近梁柱节点的梁单元的刚度值会因刚度减小因子而减小。假定最坏的情况和复杂的损坏模式,使得相邻元素的刚度通过实质上不同的刚度减小因子而减小。模型更新的目的是最小化本征频率和本征模残差之间的差异。结构的更新参数是刚度减小因子。通过解决非线性约束优化问题来迭代确定这些参数的变化。 FE模型更新算法还在模拟测量中存在两个噪声水平的情况下进行了测试。在所有这三种情况下,更新的MAC值均在99%以上,并且模型更新后,相对本征频率差异大大改善。在无噪音且噪音中等的情况下;损坏的检测,定位和量化已成功完成。在测量噪声大的情况下,可以成功实现损坏的检测和定位。在存在高噪声的情况下,损伤量化也很有希望,因为在那种情况下,该算法仍可以相对准确地预测24个损伤参数中的18个。 (c)2007 Elsevier Ltd.保留所有权利。

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