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首页> 外文期刊>Journal of structural engineering >Experimental Study of Damage Detection by Data-Driven Subspace Identification and Finite-Element Model Updating
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Experimental Study of Damage Detection by Data-Driven Subspace Identification and Finite-Element Model Updating

机译:数据驱动子空间识别与有限元模型更新检测损伤的实验研究

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The need to identify the physical properties of a structure given its force-response (input-output) relationship is driven primarily by the need to validate the approximate solution models, such as finite-element models. This paper proposes a method, which combines the structural system identification and model updating techniques, for the damage detection of a steel frame structure and a RC frame. The damage detection procedure consists of two steps: (1) identifying the system dynamic characteristics using the subspace identification (SI) technique from input/output measurements and (2) developing a damage assessment method for structural members (including joints) based on a progressive finite-element model updating and a large-scale optimization using a nonlinear least-square technique. The proposed method was verified through a shaking table experimental study using: (1) a 1/4-scale six-story steel frame structure by loosening the connection bolts for damage simulations and (2) a two-story RC frame subject to different levels of ground excitations back to back. As demonstrated by experimental results, the proposed damage detection method, based on the combination of SI technique and the model updating approach, is very effective for the damage assessment of frame structures. The method not only can detect the damage locations but also can quantify the damage severities.
机译:鉴于结构的力-响应(输入-输出)关系,确定结构的物理特性的需求主要由验证近似解模型(例如有限元模型)的需求驱动。提出了一种结合结构系统识别和模型更新技术的钢框架结构和RC框架损伤检测方法。损坏检测程序包括两个步骤:(1)使用子空间识别(SI)技术从输入/输出测量中识别系统动态特性;以及(2)基于渐进式方法开发结构构件(包括关节)的损坏评估方法使用非线性最小二乘技术的有限元模型更新和大规模优化。通过振动台实验研究对提出的方法进行了验证,该实验使用:(1)松开连接螺栓以进行损伤模拟的1/4尺度六层钢框架结构,以及(2)受不同级别限制的两层RC框架地面激励的背靠背。实验结果表明,所提出的基于SI技术和模型更新方法的损伤检测方法对于框架结构的损伤评估非常有效。该方法不仅可以检测损伤位置,而且可以量化损伤的严重程度。

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