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首页> 外文期刊>Inverse Problems in Science & Engineering >FRF-based structural parameters estimation using strain data: sensitivity equation, measurement and excitation selection
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FRF-based structural parameters estimation using strain data: sensitivity equation, measurement and excitation selection

机译:基于FRF的结构参数估计使用应变数据:灵敏度方程,测量和励磁选择

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摘要

In this paper, a structural model updating technique is presented using frequency domain representation of incomplete strain data to identify the location and severity of structural damages. The most important challenges of model updating methods such as selection of excitation, measurement locations and interested frequency ranges are addressed. Distribution of strain energy in all structural elements and norms of the derived sensitivity equation are utilized for the selection of measurement and excitation locations. The important effect of different level of noise in measurement data and modelling error on the accuracy and robustness of the proposed method are investigated. A bowstring truss and a two-storey single-bay frame are used to evaluate the numerical ability of proposed method. The results prove the potentials of the proposed method in identifying the location and severity of damage in the presence of different errors.
机译:在本文中,使用不完整应变数据的频域表示来呈现结构模型更新技术,以识别结构损坏的位置和严重程度。 解决了模型更新方法的最重要挑战,例如激励,测量位置和感兴趣的频率范围。 衍生灵敏度方程的所有结构元素和衍生灵敏度方程的规范中的应变能量分布用于选择测量和激励位置。 研究了测量数据中不同噪声水平和建模误差对所提出的方法的准确度和鲁棒性的重要影响。 弓弦桁架和两层单架框架用于评估所提出的方法的数值。 结果证明了所提出的方法在存在不同误差存在下识别损伤的位置和严重程度的潜力。

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