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首页> 外文期刊>Nondestructive Testing and Evaluation >Lift-off nulling and internal state inspection of multi-layer conductive structures by combined signal features in pulsed eddy current testing
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Lift-off nulling and internal state inspection of multi-layer conductive structures by combined signal features in pulsed eddy current testing

机译:脉冲涡流测试中的信号特征升降掉多层导电结构的缺失和内部状态检查

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摘要

Pulsed eddy current (PEC) testing, as an emerging technique of eddy current testing, has been used for detection and analysis of internal states of multi-layer conductive structures. However, the lift-off noise, caused by irregular sample surface, varying coating thicknesses or movement of probes, may seriously influence the accuracy. Therefore, in order to improve the detection accuracy under lift-off noise, an algorithm is proposed. Firstly, the response signals with lift-off noise are analysed theoretically and experimentally; secondly, according to analysis of the multi-collinearity between the lift-off and the response signal, a model to predict the lift-off is constructed by Partial Least Square (PLS); then, based on the prediction value of the lift-off by the PLS model, an approach to detect the internal states of multi-layer conductive structures is proposed. In this approach, the internal states are determined by the classification model, which is constructed by Support Vector Machine (SVM) based on combined features. The combined signal features are composed of the lift-off feature and principal component features. Finally, a bimetallic thermostat is taken as our experimental subject to validate the proposed method. The experimental results indicate that the proposed method can reduce the effect of lift-off fluctuations and improve detection accuracy.
机译:作为涡流测试的新出现技术,脉冲涡流(PEC)测试已被用于多层导电结构的内部状态的检测和分析。然而,由不规则样品表面引起的剥离噪声,不同的涂层厚度或探针运动,可能会严重影响准确性。因此,为了提高剥离噪声的检测精度,提出了一种算法。首先,理论上和实验地分析具有剥离噪声的响应信号;其次,根据剥离和响应信号之间的多相性度的分析,通过部分最小二乘(PLS)构成用于预测剥离的模型;然后,基于PLS模型的提升的预测值,提出了一种检测多层导电结构的内部状态的方法。在这种方法中,内部状态由分类模型决定,该分类模型基于组合特征由支持向量机(SVM)构成。组合信号特征由剥离功能和主组件特征组成。最后,将一种双金属恒温器作为我们的实验主题,以验证提出的方法。实验结果表明,该方法可以降低升空波动的效果,提高检测精度。

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