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Structural control and health monitoring of building structures with unknown ground excitations : experimental investigation

机译:未知地面激励的建筑结构的结构控制和健康监测:实验研究

摘要

When health monitoring system and vibration control system both are required for a building structure, it will be beneficial and cost-effective to integrate these two systems together for creating a smart building structure. Recently, on the basis of extended Kalman filter (EKF), a time-domain integrated approach was proposed for the identification of structural parameters of the controlled buildings with unknown ground excitations. The identified physical parameters and structural state vectors were then utilized to determine the control force for vibration suppression. In this paper, the possibility of establishing such a smart building structure with the function of simultaneous damage detection and vibration suppression was explored experimentally. A five-story shear building structure equipped with three magneto-rheological (MR) dampers was built. Four additional columns were added to the building model, and several damage scenarios were then simulated by symmetrically cutting off these columns in certain stories. Two sets of earthquakes, i.e. Kobe earthquake and Northridge earthquake, were considered as seismic input and assumed to be unknown during the tests. The structural parameters and the unknown ground excitations were identified during the tests by using the proposed identification method with the measured control forces. Based on the identified structural parameters and system states, a switching control law was employed to adjust the current applied to the MR dampers for the purpose of vibration attenuation. The experimental results show that the presented approach is capable of satisfactorily identifying structural damages and unknown excitations on one hand and significantly mitigating the structural vibration on the other hand.
机译:当建筑结构同时需要健康监控系统和振动控制系统时,将这两个系统集成在一起以创建智能建筑结构将是有益且具有成本效益的。最近,在扩展卡尔曼滤波器(EKF)的基础上,提出了一种时域集成方法,用于识别具有未知地面激励的受控建筑物的结构参数。然后,利用识别出的物理参数和结构状态向量来确定控制力,以抑制振动。本文通过实验探讨了建立具有同时损伤检测和抑振功能的智能建筑结构的可能性。建造了一个五层剪切建筑结构,配备了三个磁流变(MR)阻尼器。在建筑模型中增加了四列,然后通过在某些故事中对称地切断这些列来模拟几种破坏情景。测试中考虑了两组地震,即神户地震和北岭地震,作为地震输入,并假定为未知。在测试过程中,通过使用所提出的识别方法和测得的控制力来识别结构参数和未知的地面激励。基于所识别的结构参数和系统状态,采用开关控制法则来调整施加到MR阻尼器的电流,以达到减振目的。实验结果表明,所提出的方法能够令人满意地识别结构损伤和未知的激励,另一方面能够显着减轻结构振动。

著录项

  • 作者

    He J; Xu YL; Zhan S; Huang Q;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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