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Sensor Fault Diagnosis for Impedance Monitoring Using a Piezoelectric-Based Smart Interface Technique

机译:使用基于压电的智能接口技术进行阻抗监测的传感器故障诊断

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摘要

For a structural health monitoring (SHM) system, the operational functionality of sensors is critical for successful implementation of a damage identification process. This study presents experimental and analytical investigations on sensor fault diagnosis for impedance-based SHM using the piezoelectric interface technique. Firstly, the piezoelectric interface-based impedance monitoring is experimentally conducted on a steel bolted connection to investigate the effect of structural damage and sensor defect on electromechanical (EM) impedance responses. Based on the experimental analysis, sensor diagnostic approaches using EM impedance features are designed to distinguish the sensor defect from the structural damage. Next, a novel impedance model of the piezoelectric interface-driven system is proposed for the analytical investigation of sensor fault diagnosis. Various parameters are introduced into the EM impedance formulation to model the effect of shear-lag phenomenon, sensor breakage, sensor debonding, and structural damage. Finally, the proposed impedance model is used to analytically estimate the change in EM impedance responses induced by the structural damage and the sensor defect. The analytical results are found to be consistent with experimental observations, thus evidencing the feasibility of the novel impedance model for sensor diagnosis and structural integrity assessment. The study is expected to provide theoretical and experimental foundations for impedance monitoring practices, using the piezoelectric interface technique, with the existence of sensor faults.
机译:对于结构健康监测(SHM)系统,传感器的操作功能对于成功实施损害识别过程至关重要。这项研究提出了使用压电接口技术对基于阻抗的SHM进行传感器故障诊断的实验和分析研究。首先,在钢制螺栓连接上进行基于压电接口的阻抗监测,以研究结构损坏和传感器缺陷对机电(EM)阻抗响应的影响。基于实验分析,设计了使用EM阻抗功能的传感器诊断方法,以区分传感器缺陷和结构损坏。接下来,提出了一种新型的压电界面驱动系统的阻抗模型,用于传感器故障诊断的分析研究。 EM阻抗公式中引入了各种参数,以模拟剪切滞后现象,传感器断裂,传感器脱胶和结构损坏的影响。最后,提出的阻抗模型用于分析估计由结构损坏和传感器缺陷引起的EM阻抗响应的变化。发现分析结果与实验观察结果一致,从而证明了新型阻抗模型用于传感器诊断和结构完整性评估的可行性。预期该研究将为使用压电接口技术的阻抗监测实践提供理论和实验基础,并且存在传感器故障。

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