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Elements of an Integrated Health Monitoring Framework

机译:综合健康监测框架的要素

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Internet technologies are increasingly facilitating real-time monitoring of Bridges and Highways. The advances in wireless communications for instance, are allowing practical deployments for large extended systems. Sensor data, including video signals, can be used for long-term condition assessment, traffic-load regulation, emergency response, and seismic safety applications. Computer-based automated signal-analysis algorithms routinely process the incoming data and determine anomalies based on pre-defined response thresholds and more involved signal analysis techniques. Upon authentication, appropriate action may be authorized for maintenance, early warning, and/or emergency response. In such a strategy, data from thousands of sensors can be analyzed with near real-time and long-term assessment and decision-making implications. Addressing the above, a flexible and scalable (e.g., for an entire Highway system, or portfolio of Networked Civil Infrastructure) software architecture/framework is being developed and implemented. This framework will network and integrate real-time heterogeneous sensor data, database and archiving systems, computer vision, data analysis and interpretation, physics-based numerical simulation of complex structural systems, visualization, reliability & risk analysis, and rational statistical decision-making procedures. Thus, within this framework, data is converted into information, information into knowledge, and knowledge into decision at the end of the pipeline. Such a decision-support system contributes to the vitality of our economy, as rehabilitation, renewal, replacement, and/or maintenance of this infrastructure are estimated to require expenditures in the Trillion-dollar range nationwide, including issues of Homeland security and natural disaster mitigation.
机译:互联网技术越来越促进对桥梁和公路的实时监控。例如,无线通信的进步允许对大型扩展系统进行实际部署。传感器数据(包括视频信号)可用于长期状况评估,交通负荷调节,紧急响应和地震安全应用。基于计算机的自动信号分析算法会例行处理传入的数据,并根据预定义的响应阈值和更复杂的信号分析技术确定异常情况。验证后,可以授权采取适当的措施进行维护,预警和/或紧急响应。通过这种策略,可以分析来自成千上万个传感器的数据,并且具有近乎实时的长期评估和决策制定的意义。为解决上述问题,正在开发和实现灵活且可扩展的(例如,对于整个公路系统或联网的民用基础设施的组合)软件体系结构/框架。该框架将联网并集成实时异构传感器数据,数据库和归档系统,计算机视觉,数据分析和解释,复杂结构系统的基于物理的数值模拟,可视化,可靠性和风险分析以及合理的统计决策程序。因此,在此框架内,数据在管道末端转换为信息,信息转换为知识,知识转换为决策。这样的决策支持系统有助于我们的经济发展,因为据估计,该基础设施的恢复,更新,更换和/或维护需要在万亿美元的范围内进行支出,其中包括国土安全和减轻自然灾害的问题。

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