Design of a fiber bragg grating demodulation system based on dual-core DSP
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1.School of Intelligent Manufacturing,Jianghan University,Wuhan 430056, China;2.School of Traffic and Logistics Engineering, Wuhan University of Technology,Wuhan 430070, China;3.School of Physics and Mechanical Engineering,Hubei University of Education, Wuhan 430205, China

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TN253

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    Abstract:

    The Fabry-Perot demodulation method suffers from low sampling frequency, leading to errors when measuring physical quantities with high frequency variations. To address this issue, this paper proposes a high-performance multi-channel fiber Bragg grating wavelength demodulation system using a tunable laser, designed to meet the application requirements of fiber Bragg grating sensors in high-precision and high-frequency measurements. A fast synchronous refresh program was developed to enhance the demodulation frequency and real-time performance, while a dual-core data processing program was implemented to optimize data processing efficiency. Functional and performance tests were conducted using a motor and an isometric beam. Results showed that the proposed system achieved a scanning frequency of 100 Hz and an average fitting error of 6.23 pm, significantly outperforming the comparison system with an average fitting error of 24.10 pm. The linearity reached R2=0.999 9, higher than the comparison system′s R2=0.999 5, validating its feasibility in high-performance fiber Bragg grating demodulation applications.

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  • Online: May 12,2025
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