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DYNAMICAL TESTING OF A CABLE-STAYED BRIDGE MODEL USING WIRELESS SENSOR NETWORK

机译:基于无线传感器网络的斜拉桥模型的动态测试

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Emerging wireless technologies have the promise of improving the centralized cable-based Structural Health Monitoring (SHM) system performances.Recently,a smart sensor network is introduced,and application to the next generation of SHM is proposed.In this study,the performance of the latest version of the "mote",called lmote2,is experimentally investigated through dynamic testing of an in-house cable-stayed bridge model.This paper focuses on the verification of wireless sensor network integration technologies and their application on determination of bridge structural dynamic properties.Three wireless sensors are used to measure bridge model dynamical responses excited by a vibration generator.The dedicated experimental system including the multi-functional wireless nodes,base station,LabVIEW visualization so,ware,and computer is designed for experiment evaluation.The performance the wireless system is compared with wired instrumentations.Frequency Domain Decomposition (FDD) method is then used to identify structural modal parameters from bridge model responses.A finite element (FE) model is also developed to assist the analysis of dynamical characteristics of the bridge model.The testing results,combined with the FE analysis results,demonstrate the feasibility of wireless sensing technology in civil engineering structure health monitoring application.
机译:新兴的无线技术有望改善基于电缆的集中式结构健康监测(SHM)系统的性能。最近,引入了智能传感器网络,并提出了在下一代SHM中的应用。通过对内部斜拉桥模型进行动态测试,对“ mote”的最新版本lmote2进行了实验研究。本文着重研究无线传感器网络集成技术的验证及其在确定桥梁结构动态特性中的应用。 。三个无线传感器用于测量由振动发生器激发的桥梁模型动力响应。设计了专用实验系统,包括多功能无线节点,基站,LabVIEW可视化软件,软件和计算机,用于实验评估。将无线系统与有线仪器进行比较。频域分解(FDD)方法是然后从桥梁模型响应中识别结构模态参数。还开发了有限元(FE)模型来辅助分析桥梁模型的动力特性。测试结果与有限元分析结果相结合,证明了无线技术的可行性。传感技术在土木工程结构健康监测中的应用。

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