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Structural damage detection from wavelet packet sensitivity

机译:基于小波包灵敏度的结构损伤检测

摘要

The sensitivity of wavelet packet transform (WPT) component energy with respect to local change in the system parameters is derived analytically based on the dynamic response sensitivity. A sensitivity-based method is then used for damage detection of structures. The WPT component energy sensitivity is classified into two types and their inclusion in the identification equation is discussed. The identification equation is solved using measured responses from two states of the structure with regularization in the solution. Both acceleration and strain responses have been used separately or in combination in the simulation study, and the sensitivity of acceleration with respect to local change of structural parameter is shown both analytically and numerically to be much better than that from strains. The proposed method is shown both analytically and numerically to be not sensitive to measurement noise. The method can differentiate damages at close proximity to each other with good resolution using a very short duration of measured data from only two sensors. An experimental result from a steel beam also confirms the effectiveness of the proposed method.
机译:基于动态响应灵敏度,通过分析得出小波包变换(WPT)分量能量相对于系统参数局部变化的灵敏度。然后将基于灵敏度的方法用于结构的损坏检测。 WPT组件的能量敏感性分为两种类型,并讨论了它们在识别方程中的内容。识别方程式是使用结构中两个状态的测得响应进行正则化求解的。在模拟研究中,加速度和应变响应都已单独使用或组合使用,分析和数值显示加速度对结构参数局部变化的敏感性要比应变要好得多。所提出的方法在分析和数值上均显示为对测量噪声不敏感。该方法可以使用仅来自两个传感器的非常短的测量数据持续时间,以良好的分辨率区分彼此接近的损坏。钢梁的实验结果也证实了该方法的有效性。

著录项

  • 作者

    Law SS; Li XY; Zhu XQ; Chan SL;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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