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Damage assessment of a bridge based on mode shapes estimated by responses of passing vehicles

机译:基于通过的车辆的响应估计的模式形状的桥梁损伤评估

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In this study, an indirect approach is developed for assessing the state of a bridge on the basis of mode shapes estimated by the responses of passing vehicles. Two types of damages, i.e., immobilization of a support and decrease in beam stiffness at the center, are evaluated with varying degrees of road roughness and measurement noise. The assessment theory's feasibility is verified through numerical simulations of interactive vibration between a two-dimensional beam and passing vehicles modeled simply as sprung mass. It is determined that the damage state can be recognized by the estimated mode shapes when the beam incurs severe damage, such as immobilization of rotational support, and the responses contain no noise. However, the developed theory has low robustness against noise. Therefore, numerous measurements are needed for damage identification when the measurement is contaminated with noise.
机译:在这项研究中,开发了一种间接方法,用于根据通过的车辆的响应估计的模态形状来评估桥梁的状态。通过改变道路的不平整度和测量噪声来评估两种类型的损坏,即固定支架和降低中心梁的刚度。该评估理论的可行性通过二维梁与通过车辆简单建模为弹簧悬挂质量之间的相互作用振动的数值模拟得到了验证。确定当光束遭受严重损坏(例如旋转支撑的固定)并且响应不包含噪音时,可以通过估计的模式形状识别损坏状态。但是,已发展的理论对噪声的鲁棒性很低。因此,当测量被噪声污染时,需要进行大量测量来识别损坏。

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