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Delamination detection by Multi-Level Wavelet Processing of Continuous Scanning Laser Doppler Vibrometry data

机译:多级小波处理的连续扫描激光多普勒测振数据分层检测

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A novel non-destructive testing procedure for delamination detection based on the exploitation of the simultaneous time and spatial sampling provided by Continuous Scanning Laser Doppler Vibrometry (CSLDV) and the feature extraction capability of Multi-Level wavelet-based processing is presented in this paper. The processing procedure consists in a multi-step approach. Once the optimal mother-wavelet is selected as the one maximizing the Energy to Shannon Entropy Ratio criterion among the mother-wavelet space, a pruning operation aiming at identifying the best combination of nodes inside the full-binary tree given by Wavelet Packet Decomposition (WPD) is performed. The pruning algorithm exploits, in double step way, a measure of the randomness of the point pattern distribution on the damage map space with an analysis of the energy concentration of the wavelet coefficients on those nodes provided by the first pruning operation. A combination of the point pattern distributions provided by each node of the ensemble node set from the pruning algorithm allows for setting a Damage Reliability Index associated to the final damage map. The effectiveness of the whole approach is proven on both simulated and real test cases. A sensitivity analysis related to the influence of noise on the CSLDV signal provided to the algorithm is also discussed, showing that the processing developed is robust enough to measurement noise. The method is promising: damages are well identified on different materials and for different damage-structure varieties.
机译:提出了一种基于连续扫描激光多普勒振动法(CSLDV)提供的时间和空间同步采样以及基于多级小波处理的特征提取能力的分层检测无损检测新方法。处理过程包括多步骤方法。一旦选择最佳母小波作为最大化母小波空间中能量与香农熵比标准的子波,则修剪操作旨在确定由小波包分解(WPD)给出的全二叉树内节点的最佳组合。 )执行。修剪算法通过对第一步修剪操作提供的那些节点上的小波系数的能量集中进行分析,以双步方式利用了损伤图空间上点模式分布的随机性度量。由修剪算法设置的集合节点的每个节点提供的点模式分布的组合允许设置与最终损伤图关联的损伤可靠性指标。整个方法的有效性在模拟和实际测试案例中都得到了证明。还讨论了与噪声对提供给该算法的CSLDV信号的影响有关的敏感性分析,表明开发的处理程序足以测量噪声。该方法很有希望:在不同的材料上以及针对不同的损坏结构品种,可以很好地识别损坏。

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