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A new scenario-based approach to damage detection using operational modal parameter estimates

机译:一种基于场景的新方法,使用操作模态参数估计进行损伤检测

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In this paper a vibration-based damage localization and quantification method, based on natural frequencies and mode shapes, is presented. The proposed technique is inspired by a damage assessment methodology based solely on the sensitivity of mass-normalized experimental determined mode shapes. The present method differs by being based on modal data extracted by means of Operational Modal Analysis (OMA) combined with a reasonable Finite Element (FE) representation of the test structure and implemented in a scenario-based framework. Besides a review of the basic methodology this paper addresses fundamental theoretical as well as practical considerations which are crucial to the applicability of a given vibration-based damage assessment configuration. Lastly, the technique is demonstrated on an experimental test case using automated OMA. Both the numerical study as well as the experimental test case presented in this paper are restricted to perturbations concerning mass change.
机译:提出了一种基于固有频率和振型的基于振动的损伤定位与量化方法。所提出的技术受仅基于质量归一化实验确定的模式形状的敏感性的损伤评估方法的启发。本方法的不同之处在于,基于通过操作模态分析(OMA)提取的模态数据,结合测试结构的合理有限元(FE)表示,并在基于场景的框架中实施。除了回顾基本方法论之外,本文还讨论了基本理论和实践考虑,这些因素对于给定基于振动的损伤评估配置的适用性至关重要。最后,使用自动OMA在实验测试用例上演示了该技术。本文提供的数值研究和实验测试案例都限于与质量变化有关的扰动。

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