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Vibration based structural health monitoring of an arch bridge: From automated OMA to damage detection

机译:基于振动的拱桥结构健康监测:从自动OMA到损坏检测

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摘要

In order to evaluate the usefulness of approaches based on modal parameters tracking for structural health monitoring of bridges, in September of 2007, a dynamic monitoring system was installed in a concrete arch bridge at the city of Porto, in Portugal. The implementation of algorithms to perform the continuous on-line identification of modal parameters based on structural responses to ambient excitation (automated Operational Modal Analysis) has permitted to create a very complete database with the time evolution of the bridge modal characteristics during more than 2 years. This paper describes the strategy that was followed to minimize the effects of environmental and operational factors on the bridge natural frequencies, enabling, in a subsequent stage, the identification of structural anomalies. Alternative static and dynamic regression models are tested and complemented by a Principal Components Analysis. Afterwards, the identification of damages is tried with control charts. At the end, it is demonstrated that the adopted processing methodology permits the detection of realistic damage scenarios, associated with frequency shifts around 0.2%, which were simulated with a numerical model.
机译:为了评估基于模态参数跟踪的方法对桥梁结构健康监测的有效性,2007年9月,在葡萄牙波尔图市的混凝土拱桥中安装了动态监测系统。基于对环境激励的结构响应(自动运行模态分析)执行算法的连续在线识别模态参数的算法的实施,已经创建了一个非常完整的数据库,其中包含了超过两年的桥梁模态特征的时间演变。本文介绍了为最大程度地减少环境和操作因素对桥梁固有频率的影响而采取的策略,从而可以在后续阶段识别结构异常。通过主成分分析对替代的静态和动态回归模型进行了测试和补充。然后,使用控制图尝试确定损坏。最后,证明了所采用的处理方法可以检测到实际的损坏情况,并通过数值模型模拟了约0.2%的频移。

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