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Experimental characterization of multiple cracks in a cantilever beam utilizing transient vibration data following a probabilistic approach

机译:利用概率方法利用瞬态振动数据对悬臂梁中多个裂缝进行实验表征

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摘要

This paper puts forward a practical method for detecting multiple cracks on beams by utilizing transient vibration data. To explicitly address the uncertainty that is induced by measurement noise and modeling error, the Bayesian statistical framework is followed in the proposed crack detection method, which consists of two stages. In the first stage the number of cracks is identified by a computationally efficient algorithm that utilizes the Bayesian model class selection method. In the second stage, the posterior probability density function (PDF) of crack characteristics (i.e., the crack locations and crack depths) are determined by the Bayesian model updating method. The feasibility of the proposed methodology is experimentally demonstrated using a cantilever beam with one and two artificial cracks with depths between 0% and 50% of the beam height. The experimental data consists of transient vibration time histories that are collected at a single location using a laser Doppler vibrometer measurement system and impact excitations at three locations along the beam. The results show that the two-stage procedure enables the identification of the correct number of cracks and corresponding locations and extents, together with the coefficient of variation (COV).
机译:提出了一种利用瞬态振动数据检测梁上多个裂纹的实用方法。为了明确解决由测量噪声和建模误差引起的不确定性,在提出的裂缝检测方法中遵循了贝叶斯统计框架,该方法包括两个阶段。在第一阶段,通过使用贝叶斯模型类别选择方法的高效计算算法来识别裂纹数量。在第二阶段中,通过贝叶斯模型更新方法确定裂纹特性(即裂纹位置和裂纹深度)的后验概率密度函数(PDF)。提出的方法的可行性通过使用具有一个和两个人工裂缝的悬臂梁进行了实验证明,其深度在梁高度的0%至50%之间。实验数据包括使用激光多普勒振动计测量系统在单个位置收集的瞬态振动时间历史记录以及沿光束在三个位置处的冲击激发。结果表明,采用两步法可以识别出正确的裂纹数量,相应的位置和范围以及变异系数(COV)。

著录项

  • 作者

    Lam H.; Ng C.T.; Veidt M.;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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