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Stayed-Cable Bridge Damage Detection and Localization Based on Accelerometer Health Monitoring Measurements

机译:基于加速度计健康监测测量的止耐电网桥梁损坏检测和定位

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摘要

In situ damage detection and localization using real acceleration structural health monitoring technique are the main idea of this study. The statistical and model identification time series, the response spectra, and the power density of the frequency domain are used to detect the behavior of Yonghe cable-stayed bridge during the healthy and damage states. The benchmark problem is used to detect the damage localization of the bridge during its working time. The assessment of the structural health monitoring and damage analysis concluded that (1) the kurtosis statistical moment can be used as an indicator for damage especially with increasing its percentage of change as the damage should occur; (2) the percentage of change of the Kernel density probability for the model identification error estimation can detect and localize the damage; (3) the simplified spectrum of the acceleration-displacement responses and frequencies probability changes are good tools for detection and localization of the one-line bridge damage.
机译:使用真实加速结构健康监测技术的原位损伤检测和本地化是本研究的主要思想。统计和模型识别时间序列,响应光谱和频域的功率密度用于检测健康损伤状态期间永河斜拉桥的行为。基准问题用于在其工作时间中检测桥梁的损坏定位。对结构健康监测和损伤分析的评估得出结论:(1)峰核算统计时刻可用作损坏的指标,特别是随着损害应发生的损害,造成的损害百分比; (2)模型识别误差估计的内核密度概率变化的百分比可以检测和定位损坏; (3)加速 - 位移响应和频率概率变化的简化光谱是用于检测和定位单线桥梁损坏的良好工具。

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