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Guided-wave signal processing using chirplet matching pursuits and mode correlation for structural health monitoring

机译:使用Chirplet匹配追求和模式相关性的导向波信号处理,用于结构健康监测

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Signal processing algorithms for guided wave pulse echo-based SHM must be capable of isolating individual reflections from defects in the structure, if any, which could be overlapping and multimodal. In addition, they should be able to estimate the time-frequency centers, the modes and individual energies of the reflections, which would be used to locate and characterize defects. Finally, they should be computationally efficient and amenable to automated processing. This work addresses these issues with a new algorithm employing chirplet matching pursuits followed by a mode correlation check for single point sensors. Its theoretical advantages over conventional time-frequency representations in all aspects are elaborated and these are demonstrated using numerical simulations and experiments in isotropic plate structures. The issue of in-plane triangulation is then discussed and experimental work done to explore this issue is presented. This work concludes with a description of how the algorithm can be extended to composite plate structures.
机译:用于引导波脉冲回波的SHM的信号处理算法必须能够隔离结构中的缺陷的单个反射,如果有的话,这可能是重叠和多模式。此外,它们应该能够估计时间频中心,反射的模式和各个能量,这将用于定位和表征缺陷。最后,他们应该计算到自动化加工的计算上和可致力于。这项工作通过采用Chirplet匹配追求的新算法来解决这些问题,然后进行单点传感器的模式相关检查。其在所有方面的传统时频表示上的理论优点是阐述的,并且使用各向同性板结构中的数值模拟和实验来证明这些优点。然后讨论了平面内三角测量的问题,并介绍了探索此问题的实验工作。该工作结束了算法如何扩展到复合板结构的描述。

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