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Damage Detection and Localization in Pipeline Using Sparse Estimation of Ultrasonic Guided Waves Signals

机译:超声导波信号的稀疏估计在管道中的损伤检测与定位

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This paper focuses on the development of a method for damage detection and localization in pipeline structures. These structures are subject to variation of environmental and operational conditions (EOCs) which have an impact on the collected signals. Since damage detection is generally based on comparison between the reference signals and the current signals acquired from the structure, the effects of EOCs will give rise to false alarm. This issue is addressed by selecting from the database of reference signals those with similar or very close EOCs. Such an operation can be performed by calculating a sparse estimation of the current signal. The estimation error is used as an indication of the presence of damage. Actually, a damage signal will be characterized by a high estimation error compared to that of a healthy signal. The position of the detected damage is obtained by calculating the estimation error on a sliding window over the damaged signal. This method was tested on signals collected on a small scale pipeline placed in laboratory conditions. Results have shown that the created damage was successfully detected and localized.
机译:本文着重研究一种用于管道结构中损伤检测和定位的方法。这些结构可能会受到环境和操作条件(EOC)的影响,这会对收集到的信号产生影响。由于损坏检测通常基于参考信号与从结构获取的电流信号之间的比较,因此,EOC的影响将引起虚警。通过从参考信号数据库中选择具有相似或非常接近的EOC的信号,可以解决此问题。可以通过计算当前信号的稀疏估计来执行这种操作。估计误差用作损坏存在的指示。实际上,与健康信号相比,损坏信号的特征在于较高的估计误差。通过在损坏信号上方的滑动窗口上计算估计误差来获得检测到的损坏的位置。在放置在实验室条件下的小规模管道上对信号进行了测试。结果表明,已成功检测到并确定了造成的损坏。

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