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Comparative analysis of signal processing techniques for impedance-based SHM applications in noisy environments

机译:噪声环境中基于阻抗的SHM应用的信号处理技术的比较分析

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Structural health monitoring (SHM) systems have been extensively studied in recent decades to determine the health statuses of mechanical, naval and aerospace engineering components. Currently, one of the most promising non-destructive tests for the detection of structural damage is the electromechanical impedance (EMI) technique, which uses low-cost, surface-bonded piezoelectric transducers operating both as sensors and actuators. Although many studies have reported the effectiveness of the EMI method, numerous practical issues, such as signal noise effects caused by environmental conditions, may severely affect the detection and quantification of damage. Therefore, this paper presents a comparative analysis of three signal processing techniques used in the context of the EMI method, which have the potential to enhance the detection of structural damage under environmental signal noise effects. These signal analysis methods include (i) damage indices, such as the correlation coefficient deviation metric, computed directly on impedance signatures; (ii) the wavelet transform computed on transducer response signals in the time domain; and (iii) a novel approach of damage feature extraction in the EMI method based on the Hinkley criterion. Experimental tests were carried out to analyse the three signal processing techniques on a damaged aerospace composite carbon fibre structure subjected to various signal noise levels. The experimental results revealed that conventional damage indices and wavelet transform were significantly affected by noise, whereas the proposed approach based on the Hinkley criterion was more effective for detecting damage in noisy environments. (C) 2019 Elsevier Ltd. All rights reserved.
机译:近几十年来,对结构健康监测(SHM)系统进行了广泛的研究,以确定机械,海军和航天工程组件的健康状况。当前,用于检测结构损坏的最有希望的非破坏性测试之一是机电阻抗(EMI)技术,该技术使用低成本的表面粘结压电传感器作为传感器和致动器。尽管许多研究报告了EMI方法的有效性,但是许多实际问题,例如由环境条件引起的信号噪声影响,可能会严重影响损坏的检测和量化。因此,本文对EMI方法中使用的三种信号处理技术进行了比较分析,它们有可能增强在环境信号噪声影响下检测结构损伤的能力。这些信号分析方法包括:(i)直接在阻抗签名上计算的损坏指数,例如相关系数偏差度量; (ii)在时域中根据换能器响应信号计算出的小波变换; (iii)基于Hinkley准则的EMI方法中的损伤特征提取的新方法。进行了实验测试,以分析在各种信号噪声水平下受损的航空航天复合碳纤维结构上的三种信号处理技术。实验结果表明,常规损伤指数和小波变换受噪声的影响很大,而基于欣克利准则的方法在嘈杂环境中检测损伤更为有效。 (C)2019 Elsevier Ltd.保留所有权利。

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