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An integrated structural health monitoring system for the Xijiang high-speed railway arch bridge

机译:西江高铁拱桥综合结构健康监测系统

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Compared with the highway bridges, the relatively higher requirement on the safety and comfort of vehicle makes the high-speed railway (HSR) bridges need to present enhanced dynamic performance. To this end, installing a health monitor system (HMS) on selected key HSR bridges has been widely applied. Typically, the HSR takes fully enclosed operation model and its skylight time is very short, which means that it is not easy to operate the acquisition devices and download data on site. However, current HMS usually involves manual operations, which makes it inconvenient to be used for the HSR. Hence, a HMS named DASP-MTS (Data Acquisition and Signal Processing - Monitoring Test System) that integrates the intenet, cloud computing (CC) and virtual instrument (VI) techniques, is developed in this study. DASP-MTS can realize data acquisition and transmission automatically. Furthermore, the acquired data can be timely shared with experts from various locations to deal with the unexpected events. The system works in a Browser/Server frame so that users at any places can obtain real-time data and assess the health situation without installing any software. The developed integrated HMS has been applied to the Xijiang high-speed railway arch bridge. Preliminary analysis results are presented to demonstrate the efficacy of the DASP-MTS as applied to the HSR bridges. This study will provide a reference to design the HMS for other similar bridges.
机译:与公路桥梁相比,对车辆安全性和舒适性的相对较高的要求使得高铁桥梁需要表现出增强的动态性能。为此,在选定的关键HSR桥上安装健康监控系统(HMS)已得到广泛应用。通常,HSR采用完全封闭的运行模式,天窗时间非常短,这意味着操作采集设备和现场下载数据并不容易。但是,当前的HMS通常涉及手动操作,这使得用于HSR不方便。因此,在本研究中,开发了一种名为DASP-MTS(数据采集和信号处理-监控测试系统)的HMS,该系统集成了Internet,云计算(CC)和虚拟仪器(VI)技术。 DASP-MTS可以自动实现数据采集和传输。此外,所获取的数据可以及时与来自各个位置的专家共享,以处理意外事件。该系统在浏览器/服务器框架中运行,因此任何位置的用户都可以获取实时数据并评估健康状况,而无需安装任何软件。已开发的集成HMS已应用于西江高铁拱桥。初步分析结果显示了DASP-MTS应用于高铁桥梁的功效。这项研究将为设计其他类似桥梁的HMS提供参考。

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