4.6 Article

Design and Implementation of a Wireless Sensor Network for Seismic Monitoring of Buildings

期刊

SENSORS
卷 21, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/s21113875

关键词

wireless sensor networks; Wi-Fi networks; CC3200; Node; js; ambient vibrations; data acquisition; building monitoring

资金

  1. European Union's Horizon 2020 research and innovation program [821046]
  2. Ministerio de Economia, Industria y Competitividad [CGL2016-77688-R]
  3. Conselleria de Participacion, Transparencia, Cooperacion y Calidad Democratica de la Generalitat Valenciana
  4. University of Alicante [VIGROB-116]

向作者/读者索取更多资源

The wireless seismic sensor network system presented in the article is specifically designed for building monitoring, enabling remote control and real-time signal monitoring. It is a low-cost system with high quality that allows for easy deployment in official or residential buildings.
This article presents a new wireless seismic sensor network system, especially design for building monitoring. The designed prototype allows remote control, and remote and real-time monitoring of the recorded signals by any internet browser. The system is formed by several Nodes (based on the CC3200 microcontroller of Texas Instruments), which are in charge of digitizing the ambient vibrations registered by three-component seismic sensors and transmitting them to a central server. This server records all the received signals, but also allows their real-time visualization in several remote client browsers thanks to the JavaScript's Node.js technology. The data transmission uses not only Wi-Fi technology, but also the existing network resources that nowadays can be found usually in any official or residential building (lowering deployment costs). A data synchronization scheme was also implemented to correct the time differences between the Nodes, but also the long-term drifts found in the internal clock of the microcontrollers (improving the quality of records). The completed system is a low-cost, open-hardware and open-software design. The prototype was tested in a real building, recording ambient vibrations in several floors and observing the differences due to the building structure.

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