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Piezoelectric impedance based damage detection in truss bridges based on time frequency ARMA model

机译:基于时频ARMA模型的桁架桥基于压电阻抗的损伤检测

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Electromechanical impedance (EMI) based structural health monitoring is performed by measuring the variation in the impedance due to the structural local damage. The impedance signals are acquired from the piezoelectric patches that are bonded on the structural surface. The impedance variation, which is directly related to the mechanical properties of the structure, indicates the presence of local structural damage. Two traditional EMI-based damage detection methods are based on calculating the difference between the measured impedance signals in the frequency domain from the baseline and the current structures. In this paper, a new structural damage detection approach by analyzing the time domain impedance responses is proposed. The measured time domain responses from the piezoelectric transducers will be used for analysis. With the use of the Time Frequency Autoregressive Moving Average (TFARMA) model, a damage index based on Singular Value Decomposition (SVD) is defined to identify the existence of the structural local damage. Experimental studies on a space steel truss bridge model in the laboratory are conducted to verify the proposed approach. Four piezoelectric transducers are attached at different locations and excited by a sweep-frequency signal. The impedance responses at different locations are analyzed with TFARMA model to investigate the effectiveness and performance of the proposed approach. The results demonstrate that the proposed approach is very sensitive and robust in detecting the bolt damage in the gusset plates of steel truss bridges.
机译:通过测量由于结构局部损坏而引起的阻抗变化来执行基于机电阻抗(EMI)的结构健康监测。从结合在结构表面上的压电贴片获取阻抗信号。与结构的机械性能直接相关的阻抗变化表明存在局部结构损坏。两种传统的基于EMI的损坏检测方法都是基于计算基线和电流结构在频域中测得的阻抗信号之间的差异。通过分析时域阻抗响应,提出了一种新的结构损伤检测方法。从压电换能器测得的时域响应将用于分析。使用时频自回归移动平均(TFARMA)模型,基于奇异值分解(SVD)的破坏指数被定义为识别结构局部破坏的存在。在实验室中对空间钢桁架桥模型进行了实验研究,以验证所提出的方法。四个压电换能器安装在不同的位置,并由扫频信号激励。使用TFARMA模型分析了不同位置的阻抗响应,以研究所提出方法的有效性和性能。结果表明,所提出的方法在检测钢桁桥的角撑板中的螺栓损伤方面非常灵敏且鲁棒。

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