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Structural health monitoring of bridges using acoustic emission technology and signal processing techniques

机译:使用声发射技术和信号处理技术的桥梁结构健康监测

摘要

Structural health monitoring (SHM) is the term applied to the procedure of monitoring a structure’s performance, assessing its condition and carrying out appropriate retrofitting so that it performs reliably, safely and efficiently. Bridges form an important part of a nation’s infrastructure. They deteriorate due to age and changing load patterns and hence early detection of damage helps in prolonging the lives and preventing catastrophic failures. Monitoring of bridges has been traditionally done by means of visual inspection. With recent developments in sensor technology and availability of advanced computing resources, newer techniques have emerged for SHM. Acoustic emission (AE) is one such technology that is attracting attention of engineers and researchers all around the world. udThis paper discusses the use of AE technology in health monitoring of bridge structures, with a special focus on analysis of recorded data. AE waves are stress waves generated by mechanical deformation of material and can be recorded by means of sensors attached to the surface of the structure. Analysis of the AE signals provides vital information regarding the nature of the source of emission. Signal processing of the AE waveform data can be carried out in several ways and is predominantly based on time and frequency domains. Short time Fourier transform and wavelet analysis have proved to be superior alternatives to traditional frequency based analysis in extracting information from recorded waveform. Some of the preliminary results of the application of these analysis tools in signal processing of recorded AE data will be presented in this paper.ud
机译:结构健康监测(SHM)是一个术语,用于监视结构性能,评估其状况并进行适当的改造,以使其可靠,安全和有效地运行。桥梁是一个国家基础设施的重要组成部分。它们会随着年龄的增长和负载模式的变化而恶化,因此,尽早发现损坏有助于延长寿命并防止灾难性故障。传统上,通过目视检查对桥梁进行监控。随着传感器技术的最新发展和高级计算资源的可用性,SHM出现了更新的技术。声发射(AE)就是这样一种技术,正引起全世界工程师和研究人员的关注。 ud本文讨论了AE技术在桥梁结构健康监测中的使用,特别着重于对记录数据的分析。 AE波是由材料的机械变形产生的应力波,可以通过附着在结构表面的传感器进行记录。声发射信号的分析提供了有关放射源性质的重要信息。 AE波形数据的信号处理可以通过几种方式进行,并且主要基于时域和频域。在从记录波形中提取信息时,短时傅立叶变换和小波分析已被证明是优于传统基于频率的分析的替代方法。本文将介绍这些分析工具在记录的AE数据信号处理中应用的一些初步结果。 ud

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