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Real-Time Distributed Cloud Computing Architecture for Structural Health Monitoring

机译:结构健康监测的实时分布式云计算架构

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Real-time fatigue health monitoring has the potential to serve as a valuable complement to structural health monitoring (SHM) for bridge inspections. SHM is an objective supplement to visual bridge inspections with a minimum interval between bridge inspections at 24 months. SHM can provide quantitative and objective data on a bridge's fatigue condition for fracture-critical components, of which fatigue is a criterion. Current methods of continuous structural health monitoring for condition assessment are performed by collecting measured bridge response subjected to operational traffic from an array of sensors installed on fracture-critical members of a bridge. The measured responses are used to determine the remaining fatigue life of the bridge-the minimum time before repair. The large amount of data involved in this process complicates the design of a system that will automate the data collection process at a bridge, analyze that data, and display information about bridge health to researchers and engineers. Variations in bridge designs and condition assessment algorithms also necessitate that such a system be modular and adaptable to allow for expansion to additional structures. A new system has been developed that separates bridge SHM from the data storage and communication system. This architecture creates a reliable interface for sending data from one or more bridges to a cloud server where it can be processed using modular algorithms that can be adapted for different use cases. The cloud-based web service and data repository makes bridge structural health data available to researchers at all steps of the process. This system provides significant advantages over previous platforms for structural health monitoring and condition assessment, most notably in the areas of modularity, extensibility, and reliability.
机译:实时疲劳健康监测有可能作为对桥梁检查的结构健康监测(SHM)的宝贵补充。 SHM是一个客观补充,可在24个月间在桥梁检查之间的最小间隔进行视觉桥接检查。 SHM可以提供关于桥梁临界部件的桥梁疲劳条件的定量和客观数据,其中疲劳是一种标准。通过从安装在桥梁的断裂关键构件上的传感器阵列中收集测量的桥接响应来进行条件评估的连续结构健康监测的现有方法。测量的响应用于确定桥梁的剩余疲劳寿命 - 修复前的最短时间。此过程中涉及的大量数据使系统的设计复杂化,该系统将在桥梁上自动化数据收集过程,分析该数据,并显示有关桥接健康的信息,以及研究人员和工程师。桥梁设计和条件评估算法的变化也需要这种系统是模块化的并且适用于允许膨胀到附加结构。已经开发了一种新系统,从数据存储和通信系统中分离桥SHM。该架构创建可靠的接口,用于将数据从一个或多个桥接发送到云服务器,其中可以使用可以适用于不同用例的模块化算法进行处理。基于云的Web服务和数据存储库使得在该过程的所有步骤中提供给研究人员的桥梁结构健康数据。该系统提供了与以前的结构健康监测和条件评估平台的显着优势,最值得注意的是在模块化,可扩展性和可靠性方面。

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