Abstract

The photonic integrated interrogation technology based on array waveguide grating is a hot but difficult research area in the silicon optical field. Compared with traditional interrogation methods, the photonic integration interrogation technology based on an array waveguide grating has obvious advantages in high-speed and high-precision demodulation of fiber Bragg gratings due to its high demodulation accuracy, fast demodulation speed, and small package size. In recent years, with the development of photonic integration technology, various research institutions and relevant organizations have conducted extensive and in-depth research and optimization on the photonic integration interrogation method of array waveguide gratings. In this paper we introduce the working principle of array waveguide grating and the principle of fiber Bragg grating wavelength interrogation based on array waveguide grating, the important progress of fiber Bragg grating interrogator based on array waveguide grating in both material system and system performance, and summarize the typical applications in interrogator based on array waveguide grating. The future development of fiber Bragg grating demodulation system is proposed from three aspects: new materials, system integration, and scale-up, which provides a reference for the research and development of photonic integrated interrogation technology based on array waveguide grating.

Highlights

  • 本文从 AWG 基本工作原理以及基于 AWG 的光子集成波长解调基本原理出 发,从材料和性能两个方面介绍基于 AWG 的 FBG 解调仪的研究进展,并列举了 基于 AWG 的 FBG 解调仪的实际应用,最后提出目前存在的主要问题和对未来发 展的建议。

  • FBG wavelength interrogation system based on AWG

  • An illustration of the AWG chip used for FBG sensor interrogation.[67]

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Summary

Introduction

本文从 AWG 基本工作原理以及基于 AWG 的光子集成波长解调基本原理出 发,从材料和性能两个方面介绍基于 AWG 的 FBG 解调仪的研究进展,并列举了 基于 AWG 的 FBG 解调仪的实际应用,最后提出目前存在的主要问题和对未来发 展的建议。. FBG wavelength interrogation system based on AWG. Wavelength interrogation principle of edge filtering method using AWG. Wavelength interrogation principle of relative light intensity method using AWG. AWG 波长解调系统中,AWG 通道 n 的透射谱函数和 FBG 的反射谱函数为: TAWG 其中,T0 为 AWG 传输谱的归一化因子, R0 为 FBG 反射谱的归一化因子,

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