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首页> 外文期刊>Journal of Lightwave Technology >High-Order Harmonic-Frequency Cross-Correlation Algorithm for Absolute Cavity Length Interrogation of White-Light Fiber-Optic Fabry-Perot Sensors
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High-Order Harmonic-Frequency Cross-Correlation Algorithm for Absolute Cavity Length Interrogation of White-Light Fiber-Optic Fabry-Perot Sensors

机译:高阶谐波-频率互相关算法用于白光光纤法布里-珀罗传感器绝对腔长询问

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摘要

A novel high-order harmonic-frequency cross-correlation algorithm is proposed for the cavity length interrogation of white-light fiber-optic Fabry-Perot sensors. The algorithm uses the minimum value of a high-order harmonic-frequency cross-correlation coefficient to determine the sensor cavity length by fundamental cross correlation. This eliminates ambiguity in identifying the main peak of the fundamental cross-correlation coefficient, especially when the white-light source bandwidth is insufficient. The proposed algorithm was verified through simulation and experiment using a fiber-optic FP sensor with a cavity length of 79.175 mu m. The reflection spectrum was obtained under illumination by an amplified spontaneous emission light source with a 3-dB bandwidth of 46 nm. The interrogation resolution of the algorithm was found to exceed 107.67 pm.
机译:提出了一种新颖的高次谐波互相关算法,用于白光光纤法布里-珀罗传感器的腔长查询。该算法使用高次谐波频率互相关系数的最小值,通过基本互相关来确定传感器腔体的长度。这消除了在识别基本互相关系数的主峰值时的不确定性,尤其是在白光源带宽不足时。通过使用腔长为79.175μm的光纤FP传感器的仿真和实验对所提出的算法进行了验证。反射光谱是在放大的自发发射光源照射下获得的,该自发发射光源的3 dB带宽为46 nm。发现该算法的查询分辨率超过107.67 pm。

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