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A Quasi-Distributed Optical Fiber Sensor Network for Large Strain and High Temperature Measurements of Structures

机译:用于结构大应变和高温测量的准分布式光纤传感器网络

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Due to earthquake effects, buildings often experience large strains, leading to progressive collapses. Monitoring and assessing the large strain condition of critical buildings is of paramount importance to post-earthquake responses and evacuations in earthquake-prone regions. However, few monitoring system can work under such harsh environments. For their unique attributes such as compactness, immunity to electromagnetic interference and capability integrated within various types of structures and materials, optical fiber sensors are especially attractive for quasi-distributed strain sensing purposes in harsh environments. Nevertheless, the dynamic range of strain measurements of an optical sensor is limited by the elasticity of the optical fiber. In this paper, a quasi-distributed optical fiber sensor network based on extrinsic Fabry-Perot interferometer (EFPI) and long-period fiber grating (LPFG) sensors for both large strain and high temperature measurements has been developed. The sensor network combined several inline EFPIs and LPFGs by various couplers. Each EFPI sensor in the sensor network system has the capacity of large strain measurement up to 12% and each LPFG sensor here has a temperature measurement range of up to 700°C. To obtain strain and temperature information for multiple locations more efficiently, a hybrid LPFG/EFPI optical fiber sensor based sensor network system has been studied in this paper. Experimental results demonstrate that the proposed quasi-distributed optical fiber sensor network system is capable for both large strain and high temperature measurements. Therefore, the proposed optical fiber sensor network system can be applied to monitor the quasi-distributed strain of civil infrastructure in harsh environments.
机译:由于地震的影响,建筑物经常承受较大的应变,导致逐渐倒塌。监测和评估关键建筑物的大应变状况对于地震多发地区的地震后响应和撤离至关重要。但是,很少有监视系统可以在如此恶劣的环境下工作。凭借其紧凑性,抗电磁干扰能力以及集成在各种类型的结构和材料中的能力等独特属性,光纤传感器特别适合在恶劣环境中进行准分布式应变传感。然而,光学传感器的应变测量的动态范围受到光纤弹性的限制。本文开发了一种基于外在法布里-珀罗干涉仪(EFPI)和长周期光纤光栅(LPFG)传感器的准分布式光纤传感器网络,用于大应变和高温测量。传感器网络通过各种耦合器将几个串联的EFPI和LPFG组合在一起。传感器网络系统中的每个EFPI传感器均具有高达12%的大应变测量能力,此处的每个LPFG传感器均具有高达700°C的温度测量范围。为了更有效地获得多个位置的应变和温度信息,本文研究了一种基于LPFG / EFPI混合光纤传感器的传感器网络系统。实验结果表明,所提出的准分布式光纤传感器网络系统能够同时进行大应变和高温测量。因此,所提出的光纤传感器网络系统可用于监测恶劣环境下的民用基础设施的准分布应变。

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