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基于戈泽尔算法的改进型多通道干涉式光纤传感器解调

Improved multi-channel interferometric fiber-optic sensor demodulation based on the Goertzel algorithm.

作者信息

Zhang Jianxiang, Huang Wenzhu, Zhang Wentao, Li Fang

出版信息

Opt Express. 2022 Mar 28;30(7):10929-10941. doi: 10.1364/OE.452766.

Abstract

In a multi-channel interferometric fiber-optic sensor system using space-division multiplexing (SDM) and phase-generated-carrier (PGC) demodulation, the phase delay and phase modulation depth fluctuation of each channel will affect the amplitude consistency and harmonic distortion of the demodulation results. In this paper, an improved demodulation scheme based on the Goertzel algorithm is proposed to calculate the multi-channel phase delay and phase modulation depth and to compensate for their fluctuations simultaneously. First, the carrier's 1 to 6 harmonic amplitudes in the interference fringe are extracted using the Goertzel algorithm. Then, the phase delay is calculated using the real and imaginary components of the 1 harmonic amplitude. The phase modulation depth is calculated with a combinatorial operation of the 1 to 6 harmonic amplitudes. In addition, a reference channel is introduced to implement phase delay and modulation depth feedback control. The experimental results demonstrate that the improved scheme can effectively suppress the harmonic distortion and improve the amplitude consistency of multi-channel interferometric fiber-optic sensors with low resource consumption.

摘要

在采用空分复用(SDM)和相位生成载波(PGC)解调的多通道干涉型光纤传感器系统中,每个通道的相位延迟和相位调制深度波动会影响解调结果的幅度一致性和谐波失真。本文提出一种基于戈泽尔算法的改进解调方案,用于计算多通道相位延迟和相位调制深度,并同时补偿其波动。首先,利用戈泽尔算法提取干涉条纹中载波的1至6次谐波幅度。然后,利用1次谐波幅度的实部和虚部计算相位延迟。通过1至6次谐波幅度的组合运算计算相位调制深度。此外,引入一个参考通道来实现相位延迟和调制深度的反馈控制。实验结果表明,该改进方案能够有效抑制谐波失真,并在低资源消耗的情况下提高多通道干涉型光纤传感器的幅度一致性。

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