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Short-scan interferometric interrogation and multiplexing of fibre Bragg grating sensors

机译:光纤布拉格光栅传感器的短扫描干涉询问和多路复用

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摘要

We describe an interferometric technique for the demodulation of serial fibre Bragg grating sensor arrays, yielding absolute measurement of the individual grating mean wavelengths. The composite beam reflected from the array illuminates a scanning Michelson interferometer but, in contrast to spectral measurement by Fourier Transform Spectroscopy, our technique requires an OPD scan far shorter than the coherence length of the grating reflections. The technique is based on the high-resolution measurement of the phases of the complex analytic signals and of the relationship of these phases to interferometric delay. The analytic signals are derived via the Hilbert transform, allowing frequency domain filtering of individual signals within the signal processing. The technique has yielded a resolution of 0.007 nm for an OPD scan of 1.2 mm.
机译:我们描述了一种用于串行光纤布拉格光栅传感器阵列解调的干涉技术,可产生各个光栅平均波长的绝对测量值。从阵列反射的复合光束照亮了扫描迈克尔逊干涉仪,但是与通过傅立叶变换光谱法进行光谱测量相反,我们的技术需要的OPD扫描比光栅反射的相干长度短得多。该技术基于对复杂分析信号的相位以及这些相位与干涉延迟之间关系的高分辨率测量。分析信号是通过希尔伯特变换得出的,从而可以在信号处理过程中对单个信号进行频域滤波。对于1.2 mm的OPD扫描,该技术的分辨率为0.007 nm。

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