Xu Ou, Zhang Jiejun, Yao Jianping
Opt Lett. 2016 Nov 1;41(21):4859-4862. doi: 10.1364/OL.41.004859.
High speed and high resolution interrogation of a fiber Bragg grating (FBG) sensor based on microwave photonic filtering and chirped microwave pulse compression is proposed and experimentally demonstrated. In the proposed sensor, a broadband linearly chirped microwave waveform (LCMW) is applied to a single-passband microwave photonic filter (MPF) which is implemented based on phase modulation and phase modulation to intensity modulation conversion using a phase modulator (PM) and a phase-shifted FBG (PS-FBG). Since the center frequency of the MPF is a function of the central wavelength of the PS-FBG, when the PS-FBG experiences a strain or temperature change, the wavelength is shifted, which leads to the change in the center frequency of the MPF. At the output of the MPF, a filtered chirped waveform with the center frequency corresponding to the applied strain or temperature is obtained. By compressing the filtered LCMW in a digital signal processor, the resolution is improved. The proposed interrogation technique is experimentally demonstrated. The experimental results show that interrogation sensitivity and resolution as high as 1.25 ns/με and 0.8 με are achieved.
提出并通过实验证明了一种基于微波光子滤波和啁啾微波脉冲压缩的光纤布拉格光栅(FBG)传感器的高速高分辨率询问方法。在所提出的传感器中,宽带线性啁啾微波波形(LCMW)被应用于单通带微波光子滤波器(MPF),该滤波器基于相位调制以及使用相位调制器(PM)和相移光纤布拉格光栅(PS-FBG)将相位调制转换为强度调制来实现。由于MPF的中心频率是PS-FBG中心波长的函数,当PS-FBG经历应变或温度变化时,波长会发生偏移,这会导致MPF中心频率的变化。在MPF的输出端,可获得具有与所施加应变或温度相对应的中心频率的滤波啁啾波形。通过在数字信号处理器中压缩滤波后的LCMW,分辨率得以提高。对所提出的询问技术进行了实验验证。实验结果表明,实现了高达1.25 ns/με的询问灵敏度和0.8 με的分辨率。