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Damage Assessment of the Truss System with Uncertainty Using Frequency Response Function Based Damage Identification Method

机译:基于频率响应函数的损伤识别方法不确定性桁架系统损伤评估

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摘要

A novel vibration-based damage identification methodology for the truss system with mass and stiffness uncertainties is proposed and demonstrated. This approach utilizes the damaged-induced changes of frequency response functions (FRF) to assess the severity and location of the structural damage in the system. The damage identification algorithm is developed basing on the least square and Newton-Raphson methods. The dynamical model of system is built using finite element method and Lagrange principle while the crack model is based on fracture mechanics. The method is synthesized via numerical examples for a truss system to demonstrate the effectiveness in detecting both stiffness and mass uncertainty existed in the system.
机译:提出并证明了具有质量和刚度不确定性的桁架系统基于振动的新型损伤识别方法。这种方法利用损坏引起的频率响应函数(FRF)的变化来评估系统中结构损坏的严重程度和位置。基于最小二乘和牛顿-拉夫森方法开发了损伤识别算法。系统的动力学模型是采用有限元方法和拉格朗日原理建立的,而裂纹模型是基于断裂力学的。通过数值示例对桁架系统进行了综合,证明了在检测系统中同时存在的刚度和质量不确定性方面的有效性。

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