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On assessing the robustness of an input signal optimization algorithm for damage detection: the Info-Gap Decision Theory approach

机译:评估输入信号优化算法造成损伤检测的鲁棒性:信息间隙决策理论方法

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摘要

The Info-Gap Decision Theory (IGDT) is here adopted to assess the robustness of a technique aimed at identifying the optimal excitation signal within a structural health monitoring (SHM) procedure. Given limited system response measurements and ever-present physical limits on the level of excitation, the ultimate goal of the mentioned technique is to improve the detectability of the damage increasing the difference between measurable outputs of the undamaged and damaged system. In particular, a 2 DOF mass-spring-damper system characterized by the presence of a nonlinear stiffness is considered. Uncertainty is introduced within the system under the form of deviations of its parameters (mass, stiffness, damping ratio...) from their nominal values. Variations in the performance of the mentioned technique are then evaluated both in terms of changes in the estimated difference between the responses of the damaged and undamaged system and in terms of deviations of the identified optimal input signal from its nominal estimation. Finally, plots of the performances of the analyzed algorithm for different levels of uncertainty are obtained, showing which parameters are more sensitive to the presence of uncertainty and thus enabling a clear evaluation of its robustness.
机译:这里采用信息差距决策理论(IGDT)来评估旨在识别结构健康监测(SHM)程序中最佳激励信号的技术的稳健性。给定有限系统响应测量和恒定的兴奋水平的物理限制,所以提到的技术的最终目标是提高损伤的可检测性,增加了未损坏的系统的可测量输出之间的差异。特别地,考虑了一个特征的2 DOF质量弹簧阻尼系统,其特征在于存在非线性刚度的存在。从其名义值的参数(质量,刚度,阻尼比率......)的偏差形式,在系统内引入不确定性。然后,在损坏和未损坏系统的响应与识别的最佳输入信号与标称估计的偏差方面的估计差异之间的变化方面评估所提到的技术性能的变化。最后,获得了分析算法的分析算法的表演的曲线,显示了对不确定性的存在更敏感的参数,从而可以清楚地评估其鲁棒性。

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