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Metamodel-based pattern recognition approach for real-time identification of earthquake-induced damage in historic masonry structures

机译:基于Metamodel的模式识别方法,用于历史砌体结构中地震诱导损伤的实时识别方法

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摘要

Damage localization/quantification through vibration-based Structural Health Monitoring (SHM) is commonly performed by inverse calibration of a numerical model. Nevertheless, the numerous simulations required in the associated optimization problem pose a daunting obstacle when applied to real-time SHM. Particularly critical are heritage buildings, whose complex geometries often require computationally intensive modellings. In this light, this paper presents a novel earthquake-induced damage identification approach for historic masonry structures. This relies upon the use of a computationally efficient meta-model suited for real-time system identification. The optimization problem is formulated accounting for discrepancies between numerical and experimental resonant frequencies and mode shapes. Damage localization/quantification is enabled by multivariate analyses of continuously identified model parameters. A real medieval tower is presented as a case study, and several damage scenarios are simulated and used for validation. The reported results pave the way for the development of next-generation long-term vibration-based SHM systems with real-time damage identification capabilities.
机译:通过振动的结构健康监测(SHM)损坏定位/定量通常通过数值模型的逆校准来执行。然而,在应用于实时SHM时,相关优化问题所需的许多模拟造成了令人生畏的障碍。遗产建筑特别关键,其复杂的几何形状通常需要计算密集型发动机。在这种光明中,本文提出了一种新的地震诱导历史砌体结构损伤识别方法。这依赖于使用适用于实时系统识别的计算有效的元模型。优化问题是制定了数值和实验谐振频率和模式形状之间的差异的差异。通过连续识别的模型参数的多变量分析使能损坏定位/量化。真正的中世纪塔作为案例研究呈现,并模拟了几种损坏方案并用于验证。据报道的结果为开发了基于下一代长期振动的SHM系统的方法,具有实时损坏识别能力。

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