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光纤干涉传感器相位生成载波解调算法研究

Translated title of the contribution: Research on improvement of phase generated carrier demodulation algorithm for fiber optic interferometric sensor
  • Yurun Hu
  • , Muguang Wang*
  • , Chunran Sun
  • , Jing Zhang
  • , Fan Bing
  • , Desheng Chen
  • *Corresponding author for this work
  • Beijing Jiaotong University
  • China North Industries Corp
  • CAS - Institute of Acoustics

Research output: Contribution to journalArticlepeer-review

Abstract

In order to solve the distortion of the demodulated signal caused by the drift of modulation depth in the traditional phase generation carrier demodulation algorithms, the signal demodulation method of differential cross division was adopted. Related theoretical analysis and simulation verification were carried out, and a high-performance phase-generating carrier demodulation scheme that was not limited by the modulation depth was obtained. The results show that the demodulation performance of the improved algorithm is always excellent when the signals under test of different amplitudes and frequencies are used for simulation. When the values of modulation depth are respectively typical values such as 2. 63rad and 2. 37rad and atypical values such as 1. 5rad and 3. Orad, the demodulated signals obtained by improved algorithm has no distortion. At the same time, when the modulation depth changes in the range of 0. 5rad - 3. 5rad, compared with traditional demodulation algorithms, the amplitude of the demodulated signal in the improved algorithm is always consistent with the signal under test and the high-order harmonic components are always very small. This research solves the distortion phenomenon caused by the modulation depth change in traditional demodulation algorithms, and provides a reference for the demodulation scheme of the optical fiber interferometric sensor system.

Translated title of the contributionResearch on improvement of phase generated carrier demodulation algorithm for fiber optic interferometric sensor
Original languageChinese (Traditional)
Pages (from-to)213-219
Number of pages7
JournalJiguang Jishu/Laser Technology
Volume46
Issue number2
DOIs
Publication statusPublished - 25 Mar 2022
Externally publishedYes

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