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Substructure based structural damage detection with limited input and output measurements

机译:基于子结构的结构损伤检测,输入和输出测量值有限

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摘要

It is highly desirable to explore efficient algorithms for detecting structural damage of large size structural systems with limited input and output measurements. In this paper, a new structural damage detection algorithm based on substructure approach is proposed for large size structural systems with limited input and output measurements. Inter-connection effect between adjacent substructures is treated as 'additional unknown inputs' to substructures. Extended state vector of each substructure and its unknown excitations are estimated by sequential extended Kalman estimator and least-squares estimation, respectively. It is shown that the 'additional unknown inputs' can be estimated by the algorithm without the measurements on the substructure interface DOFs, which is superior to previous substructural identification approaches. Also, structural parameters and unknown excitation are estimated in a sequential manner, which simplifies the identification problem compared with other existing work. Structural damage can be detected from the degradation of the identified substructural element stiffness values. The performances of the proposed algorithm are demonstrated by several numerical examples and a lab experiment. Measurement noise effect is considered. Both the simulation results and experimental data validate that the proposed algorithm is viable for structural damage detection of large size structural systems with limited input and output measurements.
机译:迫切需要探索有效的算法,以有限的输入和输出测量来检测大型结构系统的结构损伤。本文针对输入输出量有限的大型结构系统,提出了一种基于子结构方法的结构损伤检测新算法。相邻子结构之间的互连效应被视为子结构的“其他未知输入”。每个子结构的扩展状态向量及其未知激励分别通过顺序扩展卡尔曼估计器和最小二乘估计来估计。结果表明,无需对子结构界面自由度进行测量就可以通过算法估计“其他未知输入”,这优于以前的子结构识别方法。而且,结构参数和未知激励按顺序估算,与其他现有工作相比,简化了识别问题。可以从确定的子结构元素刚度值的下降中检测出结构损伤。通过几个数值例子和实验室实验证明了该算法的性能。考虑测量噪声的影响。仿真结果和实验数据均验证了该算法对于输入输出量有限的大型结构系统的结构损伤检测是可行的。

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