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Structural health monitoring and risk alarming in plate-girder bridges under uncertain temperature condition

机译:不确定温度条件下板梁桥梁结构健康监测与风险预警

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摘要

Even significant damage may cause very small changes in structural characteristics, particularly for large structures. Furthermore, these changes may go undetected due to changes in environmental and operational conditions. In this paper, the temperature-driven variability on a combined structural health monitoring (SHM) system is examined in a model plate-girder bridge. The combined SHM system consists of global vibration-based technique and local electromechanical impedance (EMI) based technique. First, dynamic modal parameters of the test structure are measured before and after the occurrence of flexural cracks at various temperatures. Also, EMI signatures are sensed before and after the changes in support systems at various temperatures. Next, the risk of damage-occurrence in the structure is alarmed by statistical pattern recognition of the signals. Damage-induced changes in the signals are distinguished from temperature-driven uncertainty. The effect of temperature variability is also assessed to estimate the accuracy of damage detection.
机译:即使是重大损坏,也可能导致结构特性的很小变化,尤其是对于大型结构。此外,由于环境和操作条件的变化,这些变化可能未被发现。在本文中,在模型板梁桥中研究了组合结构健康监测(SHM)系统上温度驱动的可变性。组合的SHM系统由基于整体振动的技术和基于局部机电阻抗(EMI)的技术组成。首先,在各种温度下出现挠曲裂纹之前和之后,都要测量测试结构的动态模态参数。同样,在各种温度下,在支持系统发生变化之前和之后,都会感应到EMI信号。接下来,通过信号的统计模式识别来警告结构中发生损坏的风险。信号中由损伤引起的变化与温度驱动的不确定性区分开。还评估了温度变化的影响,以估计损坏检测的准确性。

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