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利用频移干涉测量法的光纤法布里-珀罗传感器的混合复用方法。

Method of hybrid multiplexing for fiber-optic Fabry-Perot sensors utilizing frequency-shifted interferometry.

作者信息

Ou Yiwen, Zhou Ciming, Zheng Angui, Cheng Chunfu, Fan Dian, Yin Jiadi, Tian Hui, Li Mengmeng, Lu Ying

出版信息

Appl Opt. 2014 Dec 10;53(35):8358-65. doi: 10.1364/AO.53.008358.

Abstract

Experimental and theoretical research on hybrid multiplexing for fiber-optic Fabry-Perot (F-P) sensors based on frequency-shifted interferometry is presented. Four F-P sensors multiplexed in a hybrid configuration were experimentally investigated. The location of each multiplexed sensor was retrieved by performing the fast Fourier transform, and the reflection spectrum of each sensor was also obtained in spite of the spectral overlap, which was consistent with the results measured by an optical spectrum analyzer. With theoretical modeling, the maximum sensor number of a two-channel hybrid multiplexing system reaches 26 with crosstalk of less than -50  dB and a maximum frequency-domain signal-to-noise ratio (SNR) of ∼25  dB, when the source power is 2 mW and the sensor separation is optimal, i.e., 40 m. And the sensor number is almost twice that multiplexed by a serial system under the same conditions. An SNR improvement of 3.9 dB can be achieved by using a Hamming window in a noise-free system compared with a Hanning window. In addition, we applied the experimental multiplexing system to a strain sensing test. The cavity lengths and cavity-length shifts of the four F-P sensors were demodulated, which was consistent with the actual situation. It provides a new feasible method to multiplex F-P sensors at large scale.

摘要

本文介绍了基于频移干涉术的光纤法布里-珀罗(F-P)传感器混合复用的实验和理论研究。对以混合配置复用的四个F-P传感器进行了实验研究。通过执行快速傅里叶变换来检索每个复用传感器的位置,并且尽管存在光谱重叠,仍获得了每个传感器的反射光谱,这与光谱分析仪测量的结果一致。通过理论建模,当源功率为2 mW且传感器间距最佳(即40 m)时,两通道混合复用系统的最大传感器数量达到26,串扰小于-50 dB,最大频域信噪比(SNR)约为25 dB。并且在相同条件下,该传感器数量几乎是串行系统复用数量的两倍。与汉宁窗相比,在无噪声系统中使用汉明窗可实现3.9 dB的SNR提升。此外,我们将实验复用系统应用于应变传感测试。对四个F-P传感器的腔长和腔长偏移进行了解调,这与实际情况一致。它为大规模复用F-P传感器提供了一种新的可行方法。

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