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Intelligent bridge monitoring system based on 3G

机译:基于3G的智能桥梁监控系统

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Bridge monitoring system is significant to health diagnosis of railway bridges. This paper proposed and developed a novel architecture for large span bridge monitoring. A 3-level distributed structure is adopted in the monitoring system which includes central server, intelligent acquisition node and local controller. Acquisition nodes are located across the bridge. All the acquisition nodes are managed by one local controller. Every acquisition node has 8 channels which can sample displacement, acceleration and strain of bridge. To get high precision data, a 24bits A/D converter ADS1278 is used. Compare to the traditional method, the proposed architecture has two features. First, the acquisition node is a smart device based on powerful DSP processor. Signals of field sensors are analyzed and realtime compressed in the acquisition node. Only the processing results are sent to local controller through IEEE802.11 wireless network. This operation can relieve load of central server and decrease demand of communication bandwidth. Second, 3G wireless network is utilized to provide enough bandwidth for real-time data transmission between local controller and central server. The intelligent monitoring system has run on a large span railway bridge for six months. Running results show that the proposed system is stable and effective.
机译:桥梁监控系统对铁路桥梁的健康诊断具有重要意义。本文提出并开发了一种用于大跨度桥梁监控的新颖架构。监控系统采用三级分布式结构,包括中央服务器,智能采集节点和本地控制器。采集节点位于桥的两端。所有采集节点均由一个本地控制器管理。每个采集节点有8个通道,可以采样桥的位移,加速度和应变。为了获得高精度数据,使用了24位A / D转换器ADS1278。与传统方法相比,该结构具有两个特点。首先,采集节点是基于强大DSP处理器的智能设备。分析现场传感器的信号,并在采集节点中对其进行实时压缩。仅处理结果通过IEEE802.11无线网络发送到本地控制器。该操作可以减轻中央服务器的负担并减少通信带宽的需求。其次,利用3G无线网络为本地控制器和中央服务器之间的实时数据传输提供足够的带宽。智能监控系统已经在大跨度铁路桥梁上运行了六个月。运行结果表明,该系统是稳定有效的。

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