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Smartphone-Based Bridge Seismic Monitoring System and Long-Term Field Application Tests

机译:基于智能手机的桥梁地震监测系统和长期现场应用测试

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In this study, a bridge seismic monitoring system was developed based on smartphones connected together in the same project as a sensor network using a cloud server for easy upload and access to data. Thus, a decentralized structural seismic monitoring network was established using easy-to-install smartphones as both sensing cells and intelligence neurons. A long-term field test of this system was performed on Japan's Takamatsu bridge. Smartphones with the monitoring application were deployed at six different locations inside the bridge's concrete box girder. The system was connected to a cloud server for real-time data uploading and remote control. Inconsistent sampling rates and faulty sensor readings were identified to be two major problems with the use of the proposed system; however, correction methods were also proposed accordingly. A few seismic acceleration response records of the Takamatsu bridge were captured during the more than one-year operation period. Dynamic properties extracted from this system were compared with those of reference seismometers to verify its viability and accuracy. (C) 2019 American Society of Civil Engineers.
机译:在这项研究中,开发了一种桥梁地震监测系统,该系统基于与使用云服务器的传感器网络在同一项目中连接在一起的智能手机,以方便上传和访问数据。因此,使用易于安装的智能手机作为传感单元和智能神经元,建立了分散的结构地震监测网络。在日本的高松桥上对该系统进行了长期的现场测试。带有监控应用程序的智能手机部署在桥梁混凝土箱梁内部的六个不同位置。该系统已连接到云服务器,用于实时数据上传和远程控制。使用建议的系统时,采样率不一致和传感器读数错误被认为是两个主要问题。但是,也提出了相应的校正方法。在超过一年的运行期间,捕获了高松桥的一些地震加速度响应记录。从该系统提取的动态特性与参考地震仪的动态特性进行了比较,以验证其可行性和准确性。 (C)2019美国土木工程师学会。

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