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Direct reference‐free measurement of displacements for railroad bridge management

机译:直接无参考位移测量,用于铁路桥梁管理

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Today, railroads carry 40% of the total freight tonnage in North America, and this demand will double in the next 20years. Half of the North American railroad bridges are over 100years old. Measuring bridge displacements under train loading can assist in quantifying the safety and reliability of railroad operations. However, obtaining bridge displacements in the field is often challenging due to the lack of fixed reference points. This research studies the direct measurement of reference-free dynamic displacements using a sensing system composed of one passive-servo electromagnetic-induction (PSEMI) velocity sensor and one built-in hardware integrator unit. The authors used a shake table to quantify the accuracy of the PSEMI sensing system. The shake table replicated various bridge displacements collected in the field under train-crossing events. The results show that direct reference-free displacement errors are less than 10% when compared to linear-variable-differential-transducer (LVDT) measurements. The correlation coefficient between measurements is greater than 0.9, indicating the high correlation between the two measurements. The errors are reasonable within standard railroad management scenarios for decision making and bridge prioritization. The indirect estimated displacement (Lee-method) result shows that it is a structural dynamic parameter-related approach, because its estimation accuracy depends on the preciseness of the estimated structural dominant period. The conclusions of this study support the use of the PSEMI sensing system as an effective means to measure dynamic displacements of railroad bridges under train loading without a fixed reference or additional computing efforts.
机译:今天,铁路运输量占北美总货运量的40%,这种需求在未来20年内将翻一番。北美铁路桥的一半已有100多年的历史了。测量列车负载下的桥梁位移可以帮助量化铁路运营的安全性和可靠性。但是,由于缺乏固定的参考点,因此在野外获得桥梁位移通常具有挑战性。这项研究使用一种由一个无源伺服电磁感应(PSEMI)速度传感器和一个内置硬件积分器单元组成的传感系统,研究了无参考量动态位移的直接测量。作者使用一个摇表来量化PSEMI传感系统的精度。振动台复制了在火车穿越事件下现场收集的各种桥梁位移。结果表明,与线性可变差动换能器(LVDT)测量相比,直接无参考位移误差小于10%。测量之间的相关系数大于0.9,表明这两个测量之间的相关性很高。在用于决策和桥接优先级的标准铁路管理方案中,这些错误是合理的。间接估计位移(李方法)的结果表明,它是一种与结构动力学参数有关的方法,因为其估计精度取决于估计的结构主导周期的精度。这项研究的结论支持将PSEMI传感系统用作测量列车荷载下铁路桥梁动态位移的有效手段,而无需使用固定参考或额外的计算工作。

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