High-Accuracy, Wide-Dynamic Range Continuous FBG Interrogator Based on an AWG
作者:Yunjing Jiao, Qijing Lin, Kun Yao, Na Zhao, C. J. Tang, Dan Xian, Fuzheng Zhang, Qing-Zhi Meng, Feng Han, Zhuangde Jiang · 发表于:IEEE Transactions on Instrumentation and Measurement · 年份:2025 · DOI:10.1109/tim.2025.3548799 · 被引用次数:14 · 研究领域:Advanced Fiber Optic Sensors、Optical Network Technologies、Optical Wireless Communication Technologies
Although arrayed waveguide gratings (AWGs) are widely used in fiber Bragg grating (FBG) demodulation systems, their applications in real environments have been limited due to their narrow dynamic range and inability to continuously demodulate FBGs because of the finite bandwidth of AWG channels. Here, we developed a wide-dynamic-range, high-accuracy, continuous-demodulation FBG interrogator using a dual-input channel on-chip silicon AWG. The introduction of two input channels in the AWG allowed two spectral peaks in each channel; therefore, staggered spectral peaks were realized. A joint-peak demodulation algorithm based on this spectrum is proposed to improve the dynamic range and demodulation accuracy. With the proposed structure and algorithm, we achieved continuous interrogation with a demodulation accuracy of 25.58 pm and a dynamic range of 24.5 nm in the 1537.5–1565.3 nm wavelength region. The relative demodulation accuracy within the full range reaches 0.1%. The dynamic range of adjacent channels is 5.4 nm, which is approximately 4 times greater than the dynamic range of an FBG conventional demodulation system using an AWG, and the relative demodulation accuracy is 0.47%. This developed interrogator, with a core size of$420\times 300~\mu $m, theoretically explained and experimentally verified the possibility of the accurate measurement of an arbitrary FBG wavelength with high demodulation accuracy in the measurement range. This work achieved continuous monitoring of ex...