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ShakeNet: A portable wireless sensor network for instrumenting large civil structures

机译:ShakeNet:一种便携式无线传感器网络,用于对大型民用建筑进行检测

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摘要

We report our findings from a U.S. Geological Survey (USGS) National Earthquake Hazards Reduction Program-funded project to develop and test a wireless, portable, strong-motion network of up to 40 triaxial accelerometers for structural health monitoring. The overall goal of the project was to record ambient vibrations for several days from USGS-instrumented structures. Structural health monitoring has important applications in fields like civil engineering and the study of earthquakes. The emergence of wireless sensor networks provides a promising means to such applications. However, while most wireless sensor networks are still in the experimentation stage, very few take into consideration the realistic earthquake engineering application requirements. To collect comprehensive data for structural health monitoring for civil engineers, high-resolution vibration sensors and sufficient sampling rates should be adopted, which makes it challenging for current wireless sensor network technology in the following ways: processing capabilities, storage limit, and communication bandwidth. The wireless sensor network has to meet expectations set by wired sensor devices prevalent in the structural health monitoring community. For this project, we built and tested an application-realistic, commercially based, portable, wireless sensor network called ShakeNet for instrumentation of large civil structures, especially for buildings, bridges, or dams after earthquakes. Two to three people can deploy ShakeNet sensors within hours after an earthquake to measure the structural response of the building or bridge during aftershocks. ShakeNet involved the development of a new sensing platform (ShakeBox) running a software suite for networking, data collection, and monitoring. Deployments reported here on a tall building and a large dam were real-world tests of ShakeNet operation, and helped to refine both hardware and software.
机译:我们报告的结果来自美国地质调查局(USGS)的“国家减少地震危害计划”资助的项目,该项目旨在开发和测试多达40个三轴加速度计的无线,便携式,强运动网络,用于结构健康监测。该项目的总体目标是记录USGS仪器在几天内的环境振动。结构健康监测在土木工程和地震研究等领域具有重要的应用。无线传感器网络的出现为此类应用提供了一种有希望的手段。但是,尽管大多数无线传感器网络仍处于试验阶段,但很少考虑到实际的地震工程应用需求。为了收集用于土木工程师的结构健康监测的全面数据,应采用高分辨率振动传感器和足够的采样率,这对当前的无线传感器网络技术带来以下挑战:处理能力,存储限制和通信带宽。无线传感器网络必须满足结构健康监控社区中普遍使用的有线传感器设备设定的期望。对于此项目,我们构建并测试了一种称为应用程序的,实用的,基于商业用途的便携式无线传感器网络,称为ShakeNet,用于大型民用建筑的仪器仪表,尤其是地震后的建筑物,桥梁或大坝。地震后数小时内,两到三个人可以部署ShakeNet传感器,以测量余震期间建筑物或桥梁的结构响应。 ShakeNet参与了一个新的传感平台(ShakeBox)的开发,该平台运行用于网络,数据收集和监视的软件套件。此处报告的在高层建筑和大型水坝上的部署是对ShakeNet运行的真实测试,有助于改进硬件和软件。

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