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首页> 外文期刊>Journal of intelligent material systems and structures >Removal of temperature effect in impedance-based damage detection using the cointegration method
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Removal of temperature effect in impedance-based damage detection using the cointegration method

机译:使用协整方法消除基于阻抗的损伤检测中的温度效应

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摘要

Electromechanical impedance technique has been widely used in the area of structural health monitoring. However, both damage and variation in environmental temperature can cause the changes in electromechanical impedance signature, which may cause false damage diagnosis. The temperature effect on the electromechanical impedance-based method has been one of its main drawbacks in practical application. This article proposes a new approach based on cointegration to eliminate temperature interference in the electromechanical impedance technique. The augmented Dickey-Fuller test is used to analyze the stationary characteristics of the time series and determine the degree of non-stationarity. The Johansen test is used to obtain the cointegrating residuals instead of the direct electromechanical impedance responses for damage detection. The proposed method is verified on the undamaged and damaged steel plates with the consideration of environmental temperature variations. The damage detection was based on the electromechanical impedance technique in which the peak frequency is chosen as a cointegrated variable. The experimental results show that the cointegration method can remove the temperature effect on the electromechanical impedance responses, and the cointegrating residuals are effective indices to indicate the occurrence of damage.
机译:机电阻抗技术已广泛用于结构健康监测领域。但是,损坏和环境温度的变化都可能导致机电阻抗签名的变化,这可能会导致错误的损坏诊断。温度对基于机电阻抗的方法的影响一直是其在实际应用中的主要缺点之一。本文提出了一种基于协整的新方法,以消除机电阻抗技术中的温度干扰。增强的Dickey-Fuller检验用于分析时间序列的平稳特征并确定非平稳程度。 Johansen测试用于获得共积分残差,而不是用于损坏检测的直接机电阻抗响应。考虑环境温度变化,对未损坏和损坏的钢板进行了验证。损坏检测基于机电阻抗技术,在该技术中,将峰值频率选择为协整变量。实验结果表明,协整方法可以消除温度对机电阻抗响应的影响,协整残差是表明损伤发生的有效指标。

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