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Hybrid networking sensing system for structural health monitoring of a concrete cable-stayed bridge

机译:混合网络传感系统,用于混凝土斜拉桥的结构健康监测

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The purpose of this study is the remote structural health monitoring to identify the torsional natural frequencies and mode shapes of a concrete cable-stayed bridge using a hybrid networking sensing system. The system consists of one data aggregation unit, which is daisy-chained to one or more sensing nodes. A wireless interface is used between the data aggregation units, whereas a wired interface is used between a data aggregation unit and the sensing nodes. Each sensing node is equipped with high-precision MEMS accelerometers with adjustable sampling frequency from 0.2 Hz to 1.2 kHz. The entire system was installed inside the reinforced concrete box-girder deck of Hwamyung Bridge, which is a cable stayed bridge in Busan, South Korea, to protect the system from the harsh environmental conditions. This deployment makes wireless communication a challenge due to the signal losses and the high levels of attenuation. To address these issues, the concept of hybrid networking system is introduced with the efficient local power distribution technique. The theoretical communication range of Wi-Fi is 100m. However, inside the concrete girder, the peer to peer wireless communication cannot exceed about 20m. The distance is further reduced by the line of sight between the antennas. However, the wired daisy-chained connection between sensing nodes is useful because the data aggregation unit can be placed in the optimal location for transmission. To overcome the limitation of the wireless communication range, we adopt a high-gain antenna that extends the wireless communication distance to 50m. Additional help is given by the multi-hopping data communication protocol. The 4G modem, which allows remote access to the system, is the only component exposed to the external environment.
机译:这项研究的目的是使用混合网络传感系统进行远程结构健康监测,以识别混凝土斜拉桥的扭转固有频率和振型。该系统由一个数据聚合单元组成,该数据聚合单元以菊花链方式链接到一个或多个传感节点。在数据聚合单元之间使用无线接口,而在数据聚合单元和传感节点之间使用有线接口。每个传感节点均配备了高精度MEMS加速度计,其采样频率在0.2 Hz至1.2 kHz范围内可调。整个系统安装在Hwamyung桥的钢筋混凝土箱梁桥面内,Hwamyung桥是韩国釜山的斜拉桥,用于保护系统免受恶劣环境的影响。由于信号损耗和高衰减水平,这种部署使无线通信成为一个挑战。为了解决这些问题,引入了混合网络系统的概念以及有效的本地配电技术。 Wi-Fi的理论通讯距离为100m。但是,在混凝土大梁内部,对等无线通信不能超过20m。天线之间的视线进一步缩短了距离。但是,感测节点之间的有线菊花链连接很有用,因为可以将数据聚合单元放置在最佳位置以进行传输。为了克服无线通信范围的限制,我们采用高增益天线将无线通信距离扩展到50m。多跳数据通信协议提供了其他帮助。允许远程访问系统的4G调制解调器是唯一暴露于外部环境的组件。

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