光纤布拉格光栅
磷
材料科学
光学
光纤
光纤传感器
拉伤
纤维
光电子学
渐变折射率纤维
物理
复合材料
医学
内科学
作者
Weiliang Zhao,Xiangpeng Xiao,Qingguo Song,Hanlin Liu,Xiukang Huang,Yibo Liu,Cheng Cheng,Qizhen Sun,Zhijun Yan
标识
DOI:10.1109/jsen.2024.3452123
摘要
Real-time high spatial resolution fiber sensing is crucial for achieving high-precision strain measurement for various applications. Bulky optical frequency-domain reflectometry is one of the mainstream devices capable of achieving spatial resolution at the micrometer level, but their relatively expensive tunable laser and poor real-time performance are becoming the bottlenecks to hinder the development of ultracompact and fast response strain field measurement systems that are highly demanded in practice. Herein, we proposed a real-time and low-cost accurate strain field measurement methodology based on dense fiber Bragg gratings (FBGs) array with wavelength division multiplexing, in which the system showed a flexibly adjustable spatial resolution down to 10 mm and ultrahigh strain resolution of $0.83~\mu \varepsilon $ . Such strain field measurement methodology has been successfully applied to 2-D irregular shape sensing with a maximum relative reconstruction error of 0.16% and dynamic strain field monitoring with 50-Hz sampling rate. The high-density FBGs array based on strain field measurement systems could have the capability of cost-effective and robust practicality.
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