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Design and validation of a wireless sensor node for long term structural health monitoring

机译:用于长期结构健康监测的无线传感器节点的设计和验证

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The work deals with the design, implementation and validation of a battery powered wireless sensing platform for long term structural health monitoring. The platform (WESTmote) has been developed for use in a real world target application, a minimum two-year long post-earthquake crack monitoring campaign of a monumental building (the Basilica S. Maria di Collemaggio in L'Aquila, Italy). WESTmote is primarily oriented to the execution of strain and deformation measurements in harsh environments and natively supports resistive sensors interfacing. Low energy driven design, along with network robustness oriented software architecture, including communication stack and measurement related functions, are deeply analyzed. Flexibility of developed architecture for use in different monitoring scenarios is discussed. Finally, a detailed evaluation of proposed platform performances and lifetime based on experimental validation is presented.
机译:这项工作涉及电池供电的无线传感平台的设计,实施和验证,以进行长期的结构健康监测。该平台(WESTmote)已开发用于现实世界的目标应用程序,这是对一座纪念性建筑物(意大利拉奎拉的圣玛丽亚·迪·科莱马焦教堂)进行为期至少两年的地震后裂缝监测活动。 WESTmote主要面向在恶劣环境中执行应变和变形测量,并原生支持电阻传感器接口。深入分析了低能耗驱动的设计以及面向网络健壮性的软件体系结构,包括通信堆栈和与测量相关的功能。讨论了用于不同监视场景的已开发体系结构的灵活性。最后,基于实验验证,提出了对平台性能和使用寿命的详细评估。

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