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Damage Detection In Nonlinear Structures Using Discrete-Time Volterra Series

机译:使用离散时间Volterra系列的非线性结构损伤检测

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摘要

Structural damage identification is basically a nonlinear phenomenon; however, nonlinear procedures are not used currently in practical applications due to the complexity and difficulty for implementation of such techniques. Therefore, the development of techniques that consider the nonlinear behavior of structures for damage detection is a research of major importance since nonlinear dynamical effects can be erroneously treated as damage in the structure by classical metrics. This paper proposes the discrete-time Volterra series for modeling the nonlinear convolution between the input and output signals in a benchmark nonlinear system. The prediction error of the model in an unknown structural condition is compared with the values of the reference structure in healthy condition for evaluating the method of damage detection. Since the Volterra series separate the response of the system in linear and nonlinear contributions, these indexes are used to show the importance of considering the nonlinear behavior of the structure. The paper concludes pointing out the main advantages and drawbacks of this damage detection methodology.
机译:结构损伤识别基本上是非线性现象;然而,由于实施此类技术的复杂性和困难,目前没有使用非线性程序。因此,考虑损伤检测结构非线性行为的技术的发展是对主要重要性的研究,因为非线性动力学效应可以被错误地被视为通过古典度量的结构损坏。本文提出了用于在基准非线性系统中建模非线性卷积的离散时间Volterra系列。将未知结构条件的模型的预测误差与在损伤检测方法中的健康状况中的参考结构的值进行比较。由于Volterra系列在线性和非线性贡献将系统的响应分开,因此这些指标用于考虑结构的非线性行为的重要性。本文的结论指出了这种损伤检测方法的主要优点和缺点。

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