Zheng Hua, Wang Yuyao, Wu Huan, Huang Dongmei, Yu Changyuan, Lu Chao
Opt Lett. 2024 Jun 15;49(12):3452-3455. doi: 10.1364/OL.525224.
In this Letter, we propose and experimentally demonstrate a highly sensitive distributed dynamic pressure sensor based on a dual-linear frequency modulated optical frequency domain reflectometry (OFDR) and a coating thickness-enhanced single-mode fiber (SMF). A dual-sideband linear frequency modulation (LFM) signal is used to interrogate the sensing fiber, which allows us to obtain a dual-sideband Rayleigh backscattering signal. Due to the opposite slopes of the two LFM sidebands, the Rayleigh backscattering spectra of the two sidebands drift in opposite directions when the fiber is disturbed. By subtracting the frequency shifts of the two spectra, we can double the system's sensitivity. We further enhance the sensitivity by using an SMF with a coating thickness of 200 μm. This results in a pressure sensitivity of 3979 MHz/MPa, a measurement accuracy of 0.76 kPa, and a spatial resolution of 35 cm over a 500 m optical fiber. Our system successfully detected a dynamic pressure change at a sampling rate of 1.25 kHz, demonstrating the sensor's excellent dynamic measuring capabilities.
在本信函中,我们提出并通过实验证明了一种基于双线性调频光频域反射仪(OFDR)和涂层厚度增强单模光纤(SMF)的高灵敏度分布式动态压力传感器。采用双边带线性调频(LFM)信号对传感光纤进行询问,从而获得双边带瑞利背向散射信号。由于两个LFM边带的斜率相反,当光纤受到扰动时,两个边带的瑞利背向散射光谱会向相反方向漂移。通过减去两个光谱的频移,我们可以使系统灵敏度提高一倍。我们进一步使用涂层厚度为200μm的单模光纤提高了灵敏度。这使得在500m光纤上的压力灵敏度达到3979MHz/MPa,测量精度为0.76kPa,空间分辨率为35cm。我们的系统以1.25kHz的采样率成功检测到动态压力变化,证明了该传感器出色的动态测量能力。