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首页> 外文期刊>Journal of bridge engineering >Development of a Bridge Weigh-in-Motion System Based on Long-Gauge Fiber Bragg Grating Sensors
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Development of a Bridge Weigh-in-Motion System Based on Long-Gauge Fiber Bragg Grating Sensors

机译:基于长距离光纤布拉格光栅传感器的桥梁动态称重系统的开发

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摘要

Monitoring the weight of vehicles is essential for policymakers to maintain the condition of bridges. In the group of methods for weighing vehicles, bridge weigh-in-motion (B-WIM) systems are among the most prominent and have several advantages, such as convenience and no interruption to traffic. However, they still have one drawback in that, for most systems, a vehicle's velocity and wheelbase need to be given in advance. Currently, this problem is usually solved by adding an axle detector, which leads to higher costs. Under such circumstances, this paper presents an alternative B-WIM system to measure a vehicle's velocity, wheelbase, and axial and gross weight merely based on a single set of long-gauge fiber Bragg grating (FBG) sensors without additional devices. To test the effectiveness of this method under various conditions, a vehicle-bridge interaction (VBI) system simulation was performed based on the result of an indoor experiment. Also, an in situ test on an expressway bridge was performed to initially verify its feasibility. The results showed that this method can achieve its function with good accuracy under various conditions.
机译:监测车辆的重量对于政策制定者维持桥梁状况至关重要。在用于车辆称重的方法组中,桥梁动态称重(B-WIM)系统是最著名的系统,并且具有多个优点,例如便利性和不中断交通。然而,它们仍然具有一个缺点,即对于大多数系统而言,需要预先给出车辆的速度和轴距。当前,通常通过添加轴检测器来解决该问题,这导致更高的成本。在这种情况下,本文提出了一种替代性的B-WIM系统,该系统仅基于一套长规格的光纤布拉格光栅(FBG)传感器即可测量车辆的速度,轴距以及轴向和毛重,而无需其他设备。为了在各种条件下测试该方法的有效性,基于室内实验的结果进行了车桥相互作用(VBI)系统仿真。此外,在高速公路桥梁上进行了现场测试,以初步验证其可行性。结果表明,该方法在各种条件下都能很好地实现其功能。

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