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Monitoring of hysteretic friction degradation of curved surface sliders through a nonlinear constrained estimator

机译:通过非线性约束估计器监测曲线表面滑块的滞回摩擦劣化

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摘要

The lack of validated physical models concerning the degradation of the coefficient of friction of sliding isolators induced from the heating of the sliding surfaces during the seismic motion hampers the interpretation of experimental data and the formulation of accurate numerical models. An estimator based on a Constrained Unscented Kalman Filter (CUKF), suitable for real-time monitoring, combined with a Random Wal k Model approach (RWM) which identifies the friction degradation function without the a priori knowledge of a physical model and ensuing analytical law has been developed in the study. Both numerical analyses and experimental tests of a 2 DOF shear-type physical model are employed to demonstrate the validity of the technique. The proposed estimator is able to provide an accurate estimation of the state of the system, by predicting the structural displacement histories, and to identi f y the hysteretic degradation function in different friction conditions, from low to high friction.
机译:缺乏有关在地震运动期间从滑动表面加热引起的滑动隔离器的摩擦系数劣化的验证物理模型妨碍了对实验数据的解释和准确数值模型的配方。基于受约束的Unscented Kalman滤波器(CUKF)的估计器,适用于实时监测,与随机沃尔克模型方法(RWM)组合,该方法识别摩擦力劣化功能,而无需先验的物理模型和随后的分析法已经在研究中开发。使用2 DOF剪切型物理模型的数值分析和实验测试来证明该技术的有效性。所提出的估计器能够通过预测结构位移历史,并在不同摩擦条件下识别滞后降解函数,从低到高摩擦,能够提供系统状态的准确估计。

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