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Flexibility-based structural damage identification using Gauss-Newton method

机译:基于高斯-牛顿法的基于挠度的结构损伤识别

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摘要

Structural damage will change the dynamic characteristics, including natural frequencies, modal shapes, damping ratios and modal flexibility matrix of the structure. Modal flexibility matrix is a function of natural frequencies and mode shapes and can be used for structural damage detection and health monitoring. In this paper, experimental modal flexibility matrix is obtained from the first few lower measured natural frequencies and incomplete modal shapes. The optimization problem is then constructed by minimizing Frobenius norm of the change of flexibility matrix. Gauss-Newton method is used to solve the optimization problem, where the sensitivity of flexibility matrix with respect to structural parameters is calculated iteratively by only using the first few lower modes. The optimal solution corresponds to structural parameters which can be used to identify damage sites and extent. Numerical results show that flexibility-based method can be successfully applied to identify the damage elements and is robust to measurement noise.
机译:结构损伤将改变动力特性,包括结构的固有频率,模态形状,阻尼比和模态柔性矩阵。模态柔韧性矩阵是固有频率和模态形状的函数,可用于结构损伤检测和健康监测。在本文中,从前几个较低的实测固有频率和不完整的模态形状中获得了实验模态柔性矩阵。然后通过最小化柔性矩阵变化的Frobenius范数来构造优化问题。高斯-牛顿法用于解决优化问题,其中仅通过使用前几个较低的模式来迭代计算柔性矩阵相对于结构参数的灵敏度。最佳解决方案对应于可用于识别损坏部位和程度的结构参数。数值结果表明,基于柔度的方法可以成功地用于识别损伤元素,并且对测量噪声具有鲁棒性。

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