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Damage alarming of long-span suspension bridge based on GPS-RTK monitoring

机译:基于GPS-RTK监测的大跨度悬索桥损伤预警

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Structure damage identification and alarming of long-span bridge were conducted with three-dimensional dynamic displacement data collected by GPS subsystem of health monitoring system on Runyang Suspension Bridge. First, the effects of temperature on the main girder spatial position coordinates were analyzed from the transverse, longitudinal and vertical directions of bridge, and the correlation regression models were built between temperature and the position coordinates of main girder in the longitudinal and vertical directions; then the alarming indices of coordinate residuals were conducted, and the mean-value control chart was applied to making statistical pattern identification for abnormal changes of girder dynamic coordinates; and finally, the structural damage alarming method of main girder was established. Analysis results show that temperature has remarkable correlation with position coordinates in the longitudinal and vertical directions of bridge, and has weak correlation with the transverse coordinates. The 3% abnormal change of the longitudinal coordinates and 5% abnormal change of the vertical ones caused by structural damage are respectively identified by the mean-value control chart method based on GPS dynamic monitoring data and hence the structural abnormalities state identification and damage alarming for main girder of long-span suspension bridge can be realized in multiple directions.
机译:利用润扬大桥悬架健康监测系统GPS子系统采集的三维动态位移数据,进行大跨度桥梁结构损伤识别与报警。首先,从桥梁的横向,纵向和垂直方向分析温度对主梁空间位置坐标的影响,建立温度与主梁在纵向和垂直方向的位置坐标之间的相关回归模型;然后进行坐标残差的预警指标,并采用均值控制图对大梁动态坐标的异常变化进行统计模式识别。最后,建立了主梁结构损伤预警方法。分析结果表明,温度与桥梁纵向和竖向位置坐标的相关性显着,而与横向坐标的相关性较弱。通过基于GPS动态监测数据的均值控制图法分别识别出由结构破坏引起的纵坐标的3%异常变化和由结构破坏引起的5%的垂直异常变化,从而识别结构异常状态并进行损伤预警。大跨度悬索桥的主梁可以实现多个方向。

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