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Hyperchaotic probe for damage identification using nonlinear prediction error

机译:基于非线性预测误差的超混沌探头损伤识别

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The idea of damage assessment based on using a steady-state chaotic excitation and state space embedding, proposed during the recent few years, has led to the development of a computationally feasible health monitoring technique based on comparisons between the geometry of a baseline attractor and a test attractor at some unknown state of health. This study explores an extension to this concept, namely a hyperchaotic excitation. Three different types of Lorenz chaotic/hyperchaotic oscillators are used to provide the excitations and comparisons are made using a prediction error feature called 'nonlinear auto-prediction error', which is based on attractor geometry, to evaluate the efficiency of chaotic excitation versus hyperchaotic ones. An 8-degree-of-freedom system and a cantilever beam are two models that are used for numerical simulation. A comparison between the results from the chaotic excitation with the results from each of the hyperchaotic excitations, obtained for both of the numerical models, highlights the higher sensitivity of a hyperchaotic excitation relative to a chaotic excitation. The experimental results also confirm the numerical results conveying the higher sensitivity of the hyperchaotic excitation compared to the chaotic one. A hyperchaotic excitation having three positive Lyapunov exponents is shown in some cases to be even more sensitive than a two-positive-Lyapunov-exponent hyperchaotic excitation.
机译:近年来提出的基于使用稳态混沌激励和状态空间嵌入的损伤评估的思想,导致了基于基线吸引子和导体的几何形状比较的可计算健康监测技术的发展。在某种未知的健康状态下测试吸引子。这项研究探索了这一概念的扩展,即超混沌激发。三种不同类型的Lorenz混沌/超混沌振荡器用于提供激励,并使用一种称为“非线性自动预测误差”的预测误差功能(基于吸引子几何形状)进行比较,以评估混沌激励与超混沌振荡器的效率。 8自由度系统和悬臂梁是用于数值模拟的两个模型。从两个数值模型获得的混沌激发的结果与每个超混沌激发的结果之间的比较突出了超混沌激发相对于混沌激发的更高灵敏度。实验结果还证实了数值结果,与超混沌激发相比,该数值传达了超混沌激发的更高灵敏度。在某些情况下,具有三个正Lyapunov指数的超混沌激发被显示为比具有两个正Lyapunov指数的超混沌激发更为敏感。

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