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基于稀疏正则化机电阻抗技术的板结构损伤识别

Damage Identification in Plate Structures Using Sparse Regularization Based Electromechanical Impedance Technique.

作者信息

Fan Xingyu, Li Jun

机构信息

Guangzhou University-Curtin University Joint Research Centre for Structural Monitoring and Protection against Multi-Dynamic Hazards, School of Civil Engineering, Guangzhou University, Guangzhou 510006, China.

Centre for Infrastructural Monitoring and Protection, School of Civil and Mechanical Engineering, Curtin University, Perth 6102, WA, Australia.

出版信息

Sensors (Basel). 2020 Dec 10;20(24):7069. doi: 10.3390/s20247069.

Abstract

This paper proposes a novel structural damage quantification approach using a sparse regularization based electromechanical impedance (EMI) technique. Minor structural damage in plate structures by using the measurement of only a single surface bonded lead zirconate titanate piezoelectric (PZT) transducer was quantified. To overcome the limitations of using model-based EMI based methods in damage detection of complex or relatively large-scale structures, a three-dimensional finite element model for simulating the PZT-structure interaction is developed and calibrated with experimental results. Based on the sensitivities of the resonance frequency shifts of the impedance responses with respect to the physical parameters of plate structures, sparse regularization was applied to conduct the undetermined inverse identification of structural damage. The difference between the measured and analytically obtained impedance responses was calculated and used for identification. In this study, only a limited number of the resonance frequency shifts were obtained from the selected frequency range for damage identification of plate structures with numerous elements. The results demonstrate a better performance than those from the conventional Tikhonov regularization based methods in conducting inverse identification for damage quantification. Experimental studies on an aluminum plate were conducted to investigate the effectiveness and accuracy of the proposed approach. To test the robustness of the proposed approach, the identification results of a plate structure under varying temperature conditions are also presented.

摘要

本文提出了一种基于稀疏正则化的机电阻抗(EMI)技术的新型结构损伤量化方法。通过仅使用单个表面粘贴的锆钛酸铅压电(PZT)传感器的测量,对板结构中的微小结构损伤进行了量化。为了克服基于模型的EMI方法在复杂或相对大规模结构损伤检测中的局限性,开发了一个用于模拟PZT与结构相互作用的三维有限元模型,并根据实验结果进行了校准。基于阻抗响应的共振频率偏移对板结构物理参数的灵敏度,应用稀疏正则化进行结构损伤的不确定逆识别。计算测量得到的和分析得到的阻抗响应之间的差异,并用于识别。在本研究中,仅从选定的频率范围获得了有限数量的共振频率偏移,用于具有众多单元的板结构的损伤识别。结果表明,在进行损伤量化的逆识别方面,该方法比基于传统蒂霍诺夫正则化的方法具有更好的性能。对铝板进行了实验研究,以研究该方法的有效性和准确性。为了测试该方法的鲁棒性,还给出了板结构在不同温度条件下的识别结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6399/7763101/6c41018286c4/sensors-20-07069-g001.jpg

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