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A high reading rate fiber Bragg grating sensor system using a high-speed swept light source based on fiber vibrations

机译:使用基于光纤振动的高速扫频光源的高读取率光纤布拉格光栅传感器系统

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摘要

We propose a fiber Bragg grating (FBG) sensor array system using a high-speed swept light source. The light source is an external cavity semiconductor laser using an optical fiber coupling with a Littrow-mounted grating spectroscope, where the fiber end is vibrated in the cantilever bending mode using a piezoelectric transducer. The incident angle to the grating is scanned at an ultrasonic frequency, and the output wavelength is swept according to the vibration displacement amplitude. The maximum sweep rate of 172 kHz was achieved for the sweep range of 70 nm. In this paper, the light source is used for high-speed and high sensitivity FBG sensor interrogation. First, to test the operation of the proposed FBG sensor, the center wavelength variation due to temperature shift is measured in water. Second, we experimentally demonstrate the measurements of dynamic strain oscillating at 10 and 28 kHz. The observation of high frequency vibrations is achieved with a sufficient sampling rate.
机译:我们提出了一种使用高速扫频光源的光纤布拉格光栅(FBG)传感器阵列系统。光源是外腔半导体激光器,使用光纤与安装在Littrow上的光栅光谱仪耦合,其中光纤末端使用压电换能器以悬臂弯曲模式振动。以超声波频率扫描光栅的入射角,并根据振动位移幅度扫描输出波长。对于70 nm的扫描范围,可以达到172 kHz的最大扫描速率。在本文中,该光源用于高速和高灵敏度的FBG传感器询问。首先,为了测试所提出的FBG传感器的操作,在水中测量了由于温度变化而引起的中心波长变化。其次,我们通过实验证明了在10 kHz和28 kHz时动态应变振荡的测量结果。可以通过足够的采样率来观察高频振动。

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