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Nonlinear structural joint model updating based on instantaneous characteristics of dynamic responses

机译:基于动态响应瞬时特性的非线性结构联合模型更新

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This paper proposes a new nonlinear joint model updating method for shear type structures based on the instantaneous characteristics of the decomposed structural dynamic responses. To obtain an accurate representation of a nonlinear system's dynamics, the nonlinear joint model is described as the nonlinear spring element with bilinear stiffness. The instantaneous frequencies and amplitudes of the decomposed mono-component are first extracted by the analytical mode decomposition (AMD) method. Then, an objective function based on the residuals of the instantaneous frequencies and amplitudes between the experimental structure and the nonlinear model is created for the nonlinear joint model updating. The optimal values of the nonlinear joint model parameters are obtained by minimizing the objective function using the simulated annealing global optimization method. To validate the effectiveness of the proposed method, a single-story shear type structure subjected to earthquake and harmonic excitations is simulated as a numerical example. Then, a beam structure with multiple local nonlinear elements subjected to earthquake excitation is also simulated. The nonlinear beam structure is updated based on the global and local model using the proposed method. The results show that the proposed local nonlinear model updating method is more effective for structures with multiple local nonlinear elements. Finally, the proposed method is verified by the shake table test of a real high voltage switch structure. The accuracy of the proposed method is quantified both in numerical and experimental applications using the defined error indices. Both the numerical and experimental results have shown that the proposed method can effectively update the nonlinear joint model.
机译:基于分解后的结构动力响应的瞬时特征,提出了一种新的剪力型非线性节点模型更新方法。为了获得非线性系统动力学的精确表示,将非线性关节模型描述为具有双线性刚度的非线性弹簧元件。首先通过分析模式分解(AMD)方法提取分解后的单组分的瞬时频率和振幅。然后,基于实验结构和非线性模型之间的瞬时频率和振幅的残差创建目标函数,以进行非线性联合模型更新。非线性关节模型参数的最优值是通过使用模拟退火全局优化方法最小化目标函数而获得的。为了验证所提方法的有效性,以一个单层剪力式结构在地震和谐波激励作用下进行了数值模拟。然后,还模拟了具有多个受地震激励的局部非线性单元的梁结构。使用所提出的方法,基于整体和局部模型来更新非线性梁结构。结果表明,所提出的局部非线性模型更新方法对于具有多个局部非线性元素的结构更有效。最后,通过实际高压开关结构的振动台试验验证了该方法的有效性。使用定义的误差指标,可以在数值和实验应用中对提出的方法的准确性进行量化。数值和实验结果均表明,该方法可以有效地更新非线性联合模型。

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