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Smart damage prediction: a distance to bifurcation based approach

机译:智能损伤预测:距离分叉的方法的距离

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摘要

Damage detection and prediction is essential for structural health monitoring. Vibration based methods have been used in health monitoring. In this work damage is proposed to be a nonlinear dynamical phenomenon and can be analyzed by utilizing the bifurcation theory. A methodology for predicting failure is proposed which utilizes the concepts of distance to stability boundary as estimated by bifurcation analysis. The proposed methodology is illustrated by developing bifurcation boundary for a two degree of freedom nonlinear mass-spring-damper system. Two damage models are investigated to illustrate the utility the proposed methodology in capturing and estimating the evolution of damage phenomenon.
机译:损坏的检测和预测对于结构健康监测至关重要。基于振动的方法已用于健康监测。在这项工作中,破坏被认为是一种非线性动力学现象,可以利用分岔理论进行分析。提出了一种预测故障的方法,该方法利用了通过分叉分析估计的到稳定边界的距离的概念。通过为两自由度非线性质量-弹簧-阻尼器系统建立分叉边界来说明所提出的方法。研究了两种破坏模型,以说明所提出的方法在捕获和估计破坏现象演变中的效用。

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