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Application of time-frequency analysis for automatic hidden corrosion detection in a multilayer aluminum structure using pulsed eddy current

机译:时频分析在脉冲涡流多层铝结构中自动隐藏腐蚀检测中的应用

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摘要

Pulsed eddy current (PEC) is a non-destructive testing method used to detect corrosion and cracks in multilayer aluminum structures which are typically found in aircraft applications. Corrosion and metal loss in thin multi-layer structures are complex and variable phenomena that diminish the reliability of pulsed eddy current measurements. In this article, pulsed eddy current signals are processed to improve the accuracy and reliably of these measurements. PEC's results (time domain data) are converted by time-frequency analysis (Rihaczek distribution) to represent data in three dimensions. The time-frequency approach generates a large amount of data. Principal component analysis is applied as feature extraction to reduce redundant data to provide new features for classifiers. K-means clustering and expectation-maximization are applied to classify data and automatically determine corrosion distribution in each layer.
机译:脉冲涡流(PEC)是一种非破坏性测试方法,用于检测飞机应用中常见的多层铝结构中的腐蚀和裂缝。薄的多层结构中的腐蚀和金属损失是复杂且易变的现象,会降低脉冲涡流测量的可靠性。在本文中,对脉冲涡流信号进行处理以提高这些测量的准确性和可靠性。 PEC的结果(时域数据)通过时频分析(Rihaczek分布)进行转换,以表示三维数据。时频方法会生成大量数据。主成分分析被用作特征提取,以减少冗余数据,从而为分类器提供新的特征。应用K均值聚类和期望最大化来对数据进行分类并自动确定每一层中的腐蚀分布。

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