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Calibration of Elasto-Magnetic Sensors on In-Service Cable-Stayed Bridges for Stress Monitoring

机译:在役斜拉桥上的弹性电磁传感器的校准用于应力监测

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摘要

The recent developments in measurement technology have led to the installation of efficient monitoring systems on many bridges and other structures all over the world. Nowadays, more and more structures have been built and instrumented with sensors. However, calibration and installation of sensors remain challenging tasks. In this paper, we use a case study, Adige Bridge, in order to present a low-cost method for the calibration and installation of elasto-magnetic sensors on cable-stayed bridges. Elasto-magnetic sensors enable monitoring of cable stress. The sensor installation took place two years after the bridge construction. The calibration was conducted in two phases: one in the laboratory and the other one on site. In the laboratory, a sensor was built around a segment of cable that was identical to those of the cable-stayed bridge. Then, the sample was subjected to a defined tension force. The sensor response was compared with the applied load. Experimental results showed that the relationship between load and magnetic permeability does not depend on the sensor fabrication process except for an offset. The determination of this offset required in situ calibration after installation. In order to perform the in situ calibration without removing the cables from the bridge, vibration tests were carried out for the estimation of the cables’ tensions. At the end of the paper, we show and discuss one year of data from the elasto-magnetic sensors. Calibration results demonstrate the simplicity of the installation of these sensors on existing bridges and new structures.
机译:测量技术的最新发展已导致在世界各地的许多桥梁和其他结构上安装了高效的监视系统。如今,越来越多的结构已经建成并配备了传感器。但是,传感器的校准和安装仍然是一项艰巨的任务。在本文中,我们以案例研究“阿迪杰大桥”为例,以提出一种用于在斜拉桥上校准和安装弹性传感器的低成本方法。电磁传感器可以监控电缆应力。传感器的安装是在桥梁建造两年后进行的。校准分两个阶段进行:一个在实验室,另一个在现场。在实验室中,围绕一段与斜拉桥相同的传感器建造了一个传感器。然后,样品受到规定的张力。将传感器响应与施加的负载进行比较。实验结果表明,负载和磁导率之间的关系除偏移量外,不依赖于传感器的制造过程。确定该偏移量后,需要在安装后进行现场校准。为了在不从桥上拆除电缆的情况下进行现场校准,进行了振动测试以估计电缆的张力。在本文的最后,我们展示并讨论了来自弹性传感器的一年数据。校准结果证明了在现有桥梁和新结构上安装这些传感器的简便性。

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