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Sub-Frequency Interval Approach in Electromechanical Impedance Technique for Concrete Structure Health Monitoring

机译:机电阻抗技术的亚频区间法在混凝土结构健康监测中的应用

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摘要

The electromechanical (EM) impedance technique using piezoelectric lead zirconate titanate (PZT) transducers for structural health monitoring (SHM) has attracted considerable attention in various engineering fields. In the conventional EM impedance technique, the EM admittance of a PZT transducer is used as a damage indicator. Statistical analysis methods such as root mean square deviation (RMSD) have been employed to associate the damage level with the changes in the EM admittance signatures, but it is difficult to determine the location of damage using such methods. This paper proposes a new approach by dividing the large frequency (30–400 kHz) range into sub-frequency intervals and calculating their respective RMSD values. The RMSD of the sub-frequency intervals (RMSD-S) will be used to study the severity and location of damage. An experiment is carried out on a real size concrete structure subjected to artificial damage. It is observed that damage close to the PZT changes the high frequency range RMSD-S significantly, while the damage far away from the PZT changes the RMSD-S in the low frequency range significantly. The relationship between the frequency range and the PZT sensing region is also presented. Finally, a damage identification scheme is proposed to estimate the location and severity of damage in concrete structures.
机译:使用压电锆钛酸铅(PZT)换能器进行结构健康监测(SHM)的机电(EM)阻抗技术已在各个工程领域引起了相当大的关注。在传统的EM阻抗技术中,PZT换能器的EM导纳用作损坏指示器。已经采用统计分析方法(例如,均方根偏差(RMSD))将损坏程度与EM导纳签名的变化相关联,但是使用此类方法很难确定损坏的位置。本文提出了一种通过将较大的频率范围(30–400 kHz)划分为子频率间隔并计算它们各自的RMSD值的新方法。子频率间隔的RMSD(RMSD-S)将用于研究损坏的严重程度和位置。在遭受人为破坏的真实尺寸混凝土结构上进行了实验。可以看出,靠近PZT的损坏会显着改变高频范围RMSD-S,而远离PZT的损坏会显着改变低频范围RMSD-S。还介绍了频率范围和PZT感应区域之间的关系。最后,提出了一种损伤识别方案,以估计混凝土结构中损伤的位置和严重程度。

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