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Impedance-based Structural Health Monitoring Considering Temperature Effects

机译:考虑温度影响的基于阻抗的结构健康监测

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This paper presents an impedance-based structural health monitoring (SHM) technique considering temperature effects. The temperature variation results in a significant impedance variation, particularly a frequency shift in the impedance, which may lead to erroneous diagnostic results of real structures such as civil, mechanical, and aerospace structures. A new damage detection strategy has been proposed based on the correlation coefficient (CC) between the reference impedance data and a concurrent impedance data with an effective frequency shift which is defined as the shift causing the maximum correlation. The proposed technique was applied to a lab-sized steel truss bridge member under the temperature varying environment. It has been found, however, the CC values are still suffering from the significant fluctuation due to the temperature variation. Therefore, an outlier analysis providing the optimal decision boundary has been carried out for damage detection. From an experimental study, it has been demonstrated that a narrow cut inflicted artificially to the steel structure was successfully detected using the proposed SHM strategy.
机译:本文提出了一种考虑温度影响的基于阻抗的结构健康监测(SHM)技术。温度变化会导致明显的阻抗变化,尤其是阻抗的频移,这可能导致对诸如民用,机械和航空航天结构之类的真实结构产生错误的诊断结果。基于参考阻抗数据与同时发生的阻抗数据之间的相关系数(CC),提出了一种新的损伤检测策略,该有效系数频移被定义为引起最大相关的频移。所提出的技术被应用于温度变化环境下的实验室大小的钢桁架桥构件。然而,已经发现,由于温度变化,CC值仍然遭受明显的波动。因此,已经进行了提供最佳决策边界的离群分析来进行损伤检测。通过实验研究,已经证明,使用建议的SHM策略可以成功检测到人为地施加于钢结构的窄切口。

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