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Hybrid Wireless Smart Sensor Network for Full-scale Structural Health Monitoring of a Cable-stayed Bridge

机译:混合无线智能传感器网络,用于斜拉桥的全面结构健康监测

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Rapid advancement of sensor technology has been changing the paradigm of Structural Health Monitoring (SHM) toward a wireless smart sensor network (WSSN). While smart sensors have the potential to be a breakthrough to current SHM research and practice, the smart sensors also have several important issues to be resolved that may include robust power supply, stable communication, sensing capability, and in-network data processing algorithms. This study is a hybrid WSSN that addresses those issues to realize a full-scale SHM system for civil infrastructure monitoring. The developed hybrid WSSN is deployed on the Jindo Bridge, a cable-stayed bridge located in South Korea as a continued effort from the previous year's deployment. Unique features of the new deployment encompass: (1) the world's largest WSSN for SHM to date, (2) power harvesting enabled for all sensor nodes, (3) an improved sensing application that provides reliable data acquisition with optimized power consumption, (4) decentralized data aggregation that makes the WSSN scalable to a large, densely deployed sensor network, (5) decentralized cable tension monitoring specially designed for cable-stayed bridges, (6) environmental monitoring. The WSSN implementing all these features are experimentally verified through a long-term monitoring of the Jindo Bridge.
机译:传感器技术的飞速发展已经将结构健康监测(SHM)的范式改变为朝着无线智能传感器网络(WSSN)的方向发展。尽管智能传感器有可能成为当前SHM研究和实践的突破,但是智能传感器还有一些重要的问题需要解决,其中包括强大的电源,稳定的通信,传感能力以及网络内数据处理算法。这项研究是一个混合WSSN,旨在解决这些问题,以实现用于民用基础设施监控的完整SHM系统。已开发的混合WSSN部署在位于韩国的斜拉桥Jindo桥上,这是上一年部署以来的不懈努力。新部署的独特功能包括:(1)迄今为止用于SHM的世界上最大的WSSN,(2)为所有传感器节点启用功率收集,(3)改进的传感应用程序,可提供可靠的数据采集并具有优化的功耗,(4 )分散的数据聚合,使WSSN可扩展到大型且密集部署的传感器网络;(5)专为斜拉桥设计的分散式电缆张力监测;(6)环境监测。通过对Jindo桥进行长期监视,对实现所有这些功能的WSSN进行了实验验证。

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