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Intensity effects in Bragg grating sensors scanned by a tunable filter

机译:通过可调滤波器扫描布拉格光栅传感器的强度效应

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摘要

The fact that the wavelength shift in fiber Bragg grating sensors is insensitive to intensity fluctuations has made them superior to other intensity-based or phase-based sensors. However, the intensity variations in the light source, the bending on lead/in-out fibers, and a tunable filter can cause signal deviations when a tunable filter scans the Bragg grating sensors. In this paper, the spectrum analysis is used in the Bragg grating sensing system for characterizing the signal deviation by intensity effects. The intensity effects are quantitatively analyzed by assuming approximate Gaussian distributions of spectra in a Bragg grating and a single-loop transmitted mode of a tunable Fabry-Perot filter in the spectrum analysis. It is concluded that the intensity effects from the light source or the macrobending on lead-in/out fibers need to be considered in high-frequency harsh environments. Thus, a cancellation method is introduced to compensate intensity variations in the Bragg grating sensing system. Experimental data shows a good agreement compared with the analytical predication in compensating intensity variations. A cancellation technique, therefore, can be effectively applied in the high-frequency harsh environments, especially in explosive tests.
机译:一个事实,即在光纤布拉格光栅传感器的波长偏移是不敏感的强度波动,已使它们优于其它基于相位强度为基础或传感器。然而,在光源的强度变化,弯曲铅/输入 - 输出纤维,以及一个可调谐滤波器可以引起信号的偏差时的可调谐滤波器扫描布拉格光栅传感器。在本文中,频谱分析在布拉格光栅传感系统用于通过强度的效果表征信号偏差。强度的影响是通过假设在一个布拉格光栅,并在频谱分析的可调谐的法布里 - 珀罗滤波器的单回路传送的模式光谱的近似高斯分布进行定量分析。可以得出结论,从光源或铅/缩小纤维的宏弯曲强度的影响需要在高频恶劣的环境中予以考虑。因此,引入了消除方法,以补偿在布拉格强度变化光栅传感系统。实验数据表明,在补偿强度变化的分析预测相比较具有良好的一致性。甲消除技术,因此,可以有效地在高频恶劣环境施加,尤其是在爆炸物的测试。

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