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Overview of a cyber-enabled wireless monitoring system for the protection and management of critical infrastructure systems

机译:用于保护和管理关键基础设施系统的基于网络的无线监视系统概述

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摘要

The long-term deterioration of large-scale infrastructure systems is a critical national problem that if left unchecked, could lead to catastrophes similar in magnitude to the collapse of the I-35W Bridge. Fortunately, the past decade has witnessed the emergence of a variety of sensing technologies from many engineering disciplines including from the civil, mechanical and electrical engineering fields. This paper provides a detailed overview of an emerging set of sensor technologies that can be effectively used for health management of large-scale infrastructure systems. In particular, the novel sensing technologies are integrated to offer a comprehensive monitoring system that fundamentally addresses the limitations associated with current monitoring systems (for example, indirect damage sensing, cost, data inundation and lack of decision making tools). Self-sensing materials are proposed for distributed, direct sensing of specific damage events common to civil structures such as cracking and corrosion. Data from self-sensing materials, as well as from more traditional sensors, are collected using ultra low-power wireless sensors powered by a variety of power harvesting devices fabricated using microelectromechanical systems (MEMS). Data collected by the wireless sensors is then seamlessly streamed across the internet and integrated with a database upon which finite element models can be autonomously updated. Life-cycle and damage detection analyses using sensor and processed data are streamed into a decision toolbox which will aid infrastructure owners in their decision making. © 2009 SPIE.
机译:大规模基础设施系统的长期恶化是一个关键的全国性问题,如果任其发展,可能会导致灾难,其规模与I-35W大桥的倒塌相似。幸运的是,过去十年见证了许多工程学科(包括土木,机械和电气工程领域)的各种传感技术的兴起。本文详细介绍了可以有效用于大规模基础架构系统的健康管理的一组新兴的传感器技术。特别是,集成了新颖的传感技术以提供一个全面的监视系统,该系统从根本上解决了与当前监视系统相关的局限性(例如,间接损坏传感,成本,数据淹没和缺乏决策工具)。提出了自感材料,用于分布式,直接感测土木结构常见的特定损坏事件,例如破裂和腐蚀。使用超低功率无线传感器收集来自自感应材料以及更传统传感器的数据,这些传感器由使用微机电系统(MEMS)制造的各种功率收集设备提供动力。然后,将无线传感器收集的数据无缝地流到Internet上,并与数据库集成在一起,在该数据库上可以自动更新有限元模型。使用传感器和处理后的数据进行的生命周期和损坏检测分析将被传输到决策工具箱中,这将帮助基础架构所有者进行决策。 ©2009 SPIE。

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