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Structural damage detection of controlled building structures using frequency response functions

机译:使用频率响应功能检测受控建筑结构的结构损伤

摘要

If a building structure requires both a vibration control system and a health monitoring system, the integration of the two systems will be cost-effective and beneficial. One of the key problems of this integrated system is how to use control devices to enhance system identification and damage detection. This paper presents a new method for system identification and damage detection of controlled building structures equipped with semi-active friction dampers through model updating based on frequency response functions. The two states of the building are first created by adding a known stiffness using semi-active friction dampers. A scheme based on the frequency response functions of the two states of the building is then presented to identify stiffness parameters of structural members in consideration of structural connectivity and transformation information. By applying the proposed model updating scheme to the damaged building, a damage detection scheme is proposed based on the identified stiffness parameters of structural members of both the original and damaged buildings. The feasibility of the proposed schemes is finally demonstrated through a detailed numerical investigation in terms of an example building, in which the effects of measurement noise and excitation conditions are discussed. The numerical results clearly show that the proposed method can locate and quantify damage satisfactorily even though measurement noise is taken into consideration.
机译:如果建筑结构同时需要振动控制系统和健康监测系统,则这两个系统的集成将具有成本效益和效益。该集成系统的关键问题之一是如何使用控制设备来增强系统识别和损坏检测能力。通过基于频率响应函数的模型更新,提出了一种新的方法,用于装备有半主动摩擦阻尼器的受控建筑结构的系统识别和损伤检测。首先通过使用半主动式摩擦阻尼器增加已知的刚度来创建建筑物的两种状态。然后提出一种基于建筑物两个状态的频率响应函数的方案,以考虑结构连接性和转换信息来识别结构构件的刚度参数。通过将提出的模型更新方案应用于受损建筑物,基于识别出的原始建筑物和受损建筑物的结构构件的刚度参数,提出了一种损坏检测方案。最后,通过对实例建筑物进行详细的数值研究,证明了所提方案的可行性,其中讨论了测量噪声和激励条件的影响。数值结果清楚地表明,即使考虑到测量噪声,该方法也能令人满意地定位和量化损伤。

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