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Development of a Real-time Remote Structural Monitoring Scheme for Civil Infrastructural Systems

机译:开发民用基础设施系统的实时远程结构监测方案

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Long-term structural monitoring has become an important requisite to ensure structural and operational safety for critical civil infrastructures. Long-term structural monitoring by acquiring data continuously or at small intervals may be difficult to achieve by employing conventional on-site monitoring methods. In order to overcome these difficulties remote structural monitoring (RSM), an advanced structural monitoring technique, can be used to acquire continuous data from the remotely instrumented structure. RSM methodology requires an interdisciplinary approach integrating areas such as structural engineering, sensor technology, communication technology, statistical mechanics, information technology for online data transmission (over larger distances) and damage detection/ health assessment of the structure. RSM has many advantages like, continuous monitoring, early alarm of any incipient damage, and data acquisition even in adverse climatic/environmental conditions. This article describes the development of an RSM scheme, developed at SERC, Chennai. The article outlines the laboratory and field investigations carried out to validate the developed scheme. Brief information about the observations and modifications made during these trials are also presented. A part of the work carried out for synthesizing online data using Auto Regressive Moving Average model is also presented.
机译:长期的结构监视已成为确保关键的民用基础设施的结构和操作安全的重要条件。通过连续或以小间隔获取数据的长期结构监视可能难以通过采用常规的现场监视方法来实现。为了克服这些困难,远程结构监视(RSM)是一种先进的结构监视技术,可用于从远程仪器结构中获取连续数据。 RSM方法论需要一种跨学科的方法,将诸如结构工程,传感器技术,通信技术,统计力学,用于在线数据传输(更大距离)的信息技术以及结构的损坏检测/健康评估等领域整合在一起。 RSM具有许多优点,例如,即使在不利的气候/环境条件下,也可以进行连续监视,对任何早期损坏进行早期警报以及数据采集。本文介绍了在钦奈SERC开发的RSM方案的开发。本文概述了为验证开发的方案而进行的实验室和现场调查。还介绍了有关在这些试验中进行的观察和修改的简要信息。还介绍了使用自动回归移动平均模型合成在线数据的部分工作。

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