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Damage Detection in Nonlinear Systems Using Optimal Feedback Auxiliary Signals and System Augmentations

机译:使用最佳反馈辅助信号和系统增强的非线性系统损伤检测

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摘要

An optimal sensitivity enhancing feedback control has been proposed recently. This method differs from previous sensitivity enhancing approaches because in addition to placing the closed-loop eigenvalues of the interrogated system, the eigenvectors are also optimally placed. This technique addresses two major limitations of frequency-based damage detection methods: the low sensitivity of the frequencies to damages and the limited range of damage scenarios identifiable from frequency-only measurement data. An unresolved challenge is enhancing sensitivity for nonlinear systems. This paper addresses this challenge by using optimal feedback auxiliary signals to enhance sensitivity for damage detection in nonlinear systems. The nonlinearity is accounted for by creating augmented linear models of higher order (in a higher dimensional state space). The methodology for constructing augmented linear systems with this property has been previously proposed by the authors (2008, "Multiple Augmentations of Nonlinear Systems and Generalized Minimum Rank Perturbations for Damage Detection, " J. Sound Vib., 316(1-5), pp. 101-121). Herein, the focus is on generalizing the previous work on sensitivity enhancing feedback and on system augmentation for enhancing sensitivity of damage detection in nonlinear systems. Results obtained by applying the optimal feedback auxiliary signals and optimal augmentation to a nonlinear mass-spring system are presented.
机译:最近已经提出了最佳的灵敏度增强反馈控制。该方法不同于以前的灵敏度增强方法,因为除了放置询问系统的闭环特征值之外,特征向量也被最佳放置。该技术解决了基于频率的损坏检测方法的两个主要局限性:频率对损坏的敏感度低以及仅基于频率的测量数据可识别的损坏情况范围有限。一个尚未解决的挑战是提高非线性系统的灵敏度。本文通过使用最佳反馈辅助信号来增强非线性系统损伤检测的灵敏度来应对这一挑战。非线性是通过创建高阶(在较高维的状态空间中)的增强线性模型来解决的。作者先前已经提出了构建具有这种特性的增强线性系统的方法(2008,“非线性系统的多重增强和广义最小秩扰动用于损伤检测”,J。Sound Vib。,316(1-5),pp。 (第101-121页)。在此,重点是概括先前关于灵敏度增强反馈的工作以及关于增强非线性系统中损伤检测灵敏度的系统扩充的工作。提出了通过将最优反馈辅助信号和最优增幅应用于非线性质量弹簧系统而获得的结果。

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  • 来源
    《Journal of Vibration and Acoustics》 |2010年第2期|p.021002.1-021002.9|共9页
  • 作者单位

    Department of Mechanical Engineering, University of Michigan, Ann Arbor, Ml 48109;

    Department of Mechanical Engineering, University of Michigan, Ann Arbor, Ml 48109;

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