High Speed and High Stability Fiber Bragg Grating Sensing System Based on Fast and Wideband Tunable REC-DFB Laser Array
作者:Yaqiang Fan, Junwei Dong, Pan Dai, Kaichuan Xu, Zhuoying Wang, Shijie Yang, Qilu Ban, Yuan Lv, Zhenxing Sun, Feng Wang, Yuechun Shi, Xiangfei Chen · 发表于:Journal of Lightwave Technology · 年份:2024 · DOI:10.1109/jlt.2024.3519198 · 被引用次数:5 · 研究领域:Advanced Fiber Optic Sensors、Photonic and Optical Devices、Advanced Optical Sensing Technologies
A novel fiber Bragg grating (FBG) sensing system with a core laser source comprising a high-density integrated distributed feedback (DFB) laser array based on the reconstruction-equivalent-chirp (REC) technique is presented and demonstrated. This study proposes a fast and wideband wavelength-swept laser (WSL) based on a DFB laser array. 24 lasers are monolithically integrated with an 8 × 3 matrix structure with a wavelength spacing of 2.1 nm. The REC technique is used to simplify the grating fabrication and enhance the precise control of the wavelength spacing. Furthermore, a high-speed FBG sensing system using field-programmable gate arrays (FPGA) is proposed and demonstrated, achieving stable high-speed sweeping with a wavelength coverage of 50.4 nm and a sweeping frequency of up to 5.85 kHz without mode hopping. The FBG sensing system has a solid-state design without moving parts, allowing real-time, high-speed, and stable monitoring of temperature, pressure, strain, and displacement. It maintains superior stability even under challenging vibration and shock environments. Additionally, the system is cost-effective and is anticipated to have diverse industrial applications.