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Stability and reliability of fiber optic measurement systems - basic conditions for successful long term structural health monitoring

机译:光纤测量系统的稳定性和可靠性-成功进行长期结构健康监测的基本条件

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Recent developments in fiber optic sensors for monitoring civil structures have been of great help for engineers dealing with these structures. After literature survey it is observed that while using fiber optic sensor system for health monitoring of civil structures not much attention is given to the core quality of the fiber, types of coating on fiber, implementing methodologies, handling of fiber optic sensors and their long term effect on reliability of the performance of the monitoring system. These issues are important because the structural conditions, stress level and environment in which fiber optic sensors are placed are different from telecommunication industry. In this paper issues related to long term structural health monitoring of civil structures are investigated. The issue of the fatigue property of optic fiber is discussed since reversal bending of the fiber may cause adverse effect on the light carrying capacity of the fiber. Other long term structural health monitoring (SHM) issues such as life of fiber, strain transfer process from fiber core to coating, calibration of fiber and selection of fiber are also discussed based on the experiments carried out for successful implementation of long term health monitoring of civil structures. The main objective of these experiments is to come up with comprehensive long term structural health monitoring system for strain measurement.
机译:用于监视土木结构的光纤传感器的最新发展对处理这些结构的工程师有很大的帮助。经过文献调查后发现,在将光纤传感器系统用于民用建筑结构健康监测时,并未对光纤的核心质量,光纤涂层类型,实施方法,光纤传感器的使用及其长期性给予过多关注。影响监控系统性能的可靠性。这些问题之所以重要,是因为放置光纤传感器的结构条件,应力水平和环境与电信行业不同。本文研究了与民用建筑的长期结构健康监测有关的问题。由于光纤的反向弯曲可能对光纤的光传输能力造成不利影响,因此讨论了光纤的疲劳特性问题。基于成功实施对光纤的长期健康监控的实验,还讨论了其他长期结构健康监控(SHM)问题,例如纤维的寿命,从纤芯到涂层的应变传递过程,光纤的校准和光纤的选择。土木结构。这些实验的主要目的是提出用于应变测量的全面的长期结构健康监测系统。

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