Fast and accurate read-out of interferometric optical fiber sensors

SPIE OPTO Pub Date : 2016-03-16 DOI:10.1117/12.2212611
Ingebrigt Bartholsen, D. Hjelme
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引用次数: 2

Abstract

We present results from an evaluation of phase and frequency estimation algorithms for read-out instrumentation of interferometric sensors. Tests on interrogating a micro Fabry-Perot sensor made of semi-spherical stimuli-responsive hydrogel immobilized on a single mode fiber end face, shows that an iterative quadrature demodulation technique (IQDT) implemented on a 32-bit microcontroller unit can achieve an absolute length accuracy of ±50 nm and length change accuracy of ±3 nm using an 80 nm SLED source and a grating spectrometer for interrogation. The mean absolute error for the frequency estimator is a factor 3 larger than the theoretical lower bound for a maximum likelihood estimator. The corresponding factor for the phase estimator is 1.3. The computation time for the IQDT algorithm is reduced by a factor 1000 compared to the full QDT for the same accuracy requirement.
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快速和准确的读出干涉光纤传感器
我们提出了对干涉传感器读出仪器的相位和频率估计算法的评估结果。对固定在单模光纤端面上的半球形刺激响应水凝胶制成的微型法布里-珀罗传感器进行了测试,结果表明,采用80 nm的SLED光源和光栅光谱仪,在32位单片机上实现的迭代正交解调技术(IQDT)可以实现±50 nm的绝对长度精度和±3 nm的长度变化精度。频率估计器的平均绝对误差比极大似然估计器的理论下界大3倍。相位估计器的相应因子为1.3。对于相同的精度要求,与完整的QDT相比,IQDT算法的计算时间减少了1000倍。
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