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Probabilistic Approach for Damping Identification Considering Uncertainty in Experimental Modal Analysis

机译:实验模态分析中考虑不确定性的阻尼识别概率方法

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摘要

The system identification technology is essentially an inverse procedure, starting from the experimentally measured response, to construct mass, stiffness, and damping matrices of the structure. However, the measurement inevitably contains uncertainties, which significantly impact the identified system characteristics, especially for damping terms. In the presence of experimental uncertainty, the aim of damping identification in this paper is not a single deterministic solution with maximum fidelity to a single experiment, but rather a set of optimized solutions with acceptable robustness to multiple uncertain experiments. To achieve this objective, an integrated approach combining deterministic identification and probabilistic calibration techniques is proposed. This approach starts from the properness condition of modes in a deterministic identification. A probabilistic estimation technique is performed on the preliminary identified data so that an uncertainty boundary is available for the calibration procedure where the genetic algorithm and classical optimization techniques are used. A comprehensive comparison metric for two continuous quantities is proposed as the objective function in the calibration procedure. Finally, a probabilistic validation metric is proposed to assess the stability of the calibrated damping matrix. In both simulated and experimental examples, the finally obtained matrices exhibit their robustness with regard to the experimental uncertainty.
机译:系统识别技术本质上是一个逆过程,从实验测量的响应开始,以构造结构的质量,刚度和阻尼矩阵。但是,测量结果不可避免地包含不确定性,这些不确定性会严重影响所确定的系统特性,尤其是对于阻尼项。在存在实验不确定性的情况下,本文中阻尼识别的目的不是针对单个实验的最大保真度的单一确定性解决方案,而是针对多个不确定性实验具有可接受鲁棒性的一组优化解决方案。为了实现这一目标,提出了一种结合确定性识别和概率校准技术的集成方法。这种方法从确定性识别中模式的正确性条件开始。对初步识别的数据执行概率估计技术,以便不确定性边界可用于使用遗传算法和经典优化技术的校准过程。提出了两个连续量的综合比较度量,作为校准过程中的目标函数。最后,提出了一种概率验证度量来评估校准阻尼矩阵的稳定性。在仿真和实验示例中,最终获得的矩阵在实验不确定性方面都表现出鲁棒性。

著录项

  • 来源
    《AIAA Journal》 |2018年第12期|4953-4964|共12页
  • 作者单位

    Univ Bourgogne Franche Comte, Dept Appl Mech, Femto ST Inst, UTBM,ENSMM,UFC,CNRS, F-25000 Besancon, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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