Miao Shuaije, Zhang Wentao, Song Ying, Huang Wenzhu
Opt Express. 2020 Apr 27;28(9):12699-12708. doi: 10.1364/OE.389135.
A high resolution fiber-optic acoustic emission (AE) sensor using a random fiber laser (RFL) is proposed. The AE probe is undertaken by a random-gratings-based erbium-doped RFL. A narrow linewidth π-FBG is used as a wavelength locking and sensing element in the RFL. The random distributed feedback in RFL significantly extends the effective cavity length of the laser, thus reduces the thermal frequency noise of the laser and improves the resolution of AE signal. A narrow lasing operation with a 20 dB linewidth of ∼10.41 kHz and a frequency noise of ∼10 Hz/√Hz above 1 kHz is realized. The 3×3 coupler interrogation technique is used for signal demodulation. A high AE signal resolution of ∼280 fɛ/√Hz @ 1 kHz is obtained. To the best of our knowledge, this is the first time that RFL is used in the 3×3 coupler based AE demodulation scheme to improve the system resolution.
提出了一种使用随机光纤激光器(RFL)的高分辨率光纤声发射(AE)传感器。AE探头由基于随机光栅的掺铒RFL承担。窄线宽π-FBG用作RFL中的波长锁定和传感元件。RFL中的随机分布反馈显著延长了激光器的有效腔长,从而降低了激光器的热频率噪声并提高了AE信号的分辨率。实现了具有约10.41 kHz的20 dB线宽和约1 kHz以上约10 Hz/√Hz频率噪声的窄激光运转。采用3×3耦合器询问技术进行信号解调。在1 kHz时获得了约280 fɛ/√Hz的高AE信号分辨率。据我们所知,这是首次将RFL用于基于3×3耦合器的AE解调方案以提高系统分辨率。