POF-based digital I-OFDR for strain detection in road construction

Korbinain Königsbauer, A. Wosniok, N. Nöther, M. Schaller
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Abstract

We report on the development of a field-proven distributed fiber optic sensing system for structural health monitoring in road construction and civil engineering. The system is based on a cost-efficient digital incoherent optical frequency domain reflectometry (I-OFDR) for distributed strain detection along a polymer optical fiber. In this method, the strain-induced backscatter increase in a graded-index multimode perfluorinated polymer optical fiber (PF-POF) is determined by measuring the complex transfer function of the sensing fiber using a compact digital data acquisition unit. This unit replaced an oversized vector network analyzer (VNA) usually used in the I-OFDR technique making the measurement system more robust and more suitable for its use in the field, whilst at the same time providing a significant reduction of the total sensor system costs. This paper presents a successful implementation of the entire sensor concept in a real construction project for the soil reinforcement and fiber optic monitoring of a road embankment using geosynthetics with incorporated PF-POF. The presented research includes development and installation in the field of the sensors integrated geosynthetics used for ground stabilization and additionally providing fiber optic POF-based monitoring function. The publication shows first measurement results of the further developed measurement method I-OFDR conducted along the PF-POF integrated in the geosynthetics embedded into a road embankment of the federal road B91 south from Leipzig.
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基于pof的数字I-OFDR在道路施工中的应变检测
我们报告了一种现场验证的用于道路建设和土木工程结构健康监测的分布式光纤传感系统的发展。该系统基于一种经济高效的数字非相干光频域反射仪(I-OFDR),用于沿聚合物光纤进行分布式应变检测。在该方法中,通过使用紧凑的数字数据采集单元测量传感光纤的复传递函数来确定梯度折射率多模全氟聚合物光纤(PF-POF)中应变引起的后向散射增加。该单元取代了通常用于I-OFDR技术的超大矢量网络分析仪(VNA),使测量系统更坚固,更适合在现场使用,同时显著降低了传感器系统的总成本。本文介绍了整个传感器概念在实际施工项目中的成功实施,用于使用含有PF-POF的土工合成材料对道路路基进行土壤加固和光纤监测。提出的研究包括开发和安装用于地面稳定的集成土工合成材料传感器,以及提供基于光纤pof的监测功能。该出版物展示了进一步开发的测量方法I-OFDR的首次测量结果,该测量方法沿着嵌入在莱比锡南部B91联邦公路路堤的土工合成材料中的PF-POF进行。
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