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Recent progress in distributed optical fiber Raman photon sensors at China Jiliang University

机译:吉林大学分布式光纤拉曼光子传感器的最新研究进展

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A brief review of recent progress in researches, productions and applications of full distributed fiber Raman photon sensors at China Jiliang University (CJLU) is presented. In order to improve the measurement distance, the accuracy, the space resolution, the ability of multi-parameter measurements, and the intelligence of full distributed fiber sensor systems, a new generation fiber sensor technology based on the optical fiber nonlinear scattering fusion principle is proposed. A series of new generation full distributed fiber sensors are investigated and designed, which consist of new generation ultra-long distance full distributed fiber Raman and Rayleigh scattering photon sensors integrated with a fiber Raman amplifier, auto-correction full distributed fiber Raman photon temperature sensors based on Raman correlation dual sources, full distributed fiber Raman photon temperature sensors based on a pulse coding source, full distributed fiber Raman photon temperature sensors using a fiber Raman wavelength shifter, a new type of Brillouin optical time domain analyzers (BOTDAs) integrated with a fiber Raman amplifier for replacing a fiber Brillouin amplifier, full distributed fiber Raman and Brillouin photon sensors integrated with a fiber Raman amplifier, and full distributed fiber Brillouin photon sensors integrated with a fiber Brillouin frequency shifter.The Internet of things is believed as one of candidates of the next technological revolution, which has driven hundreds of millions of class markets. Sensor networks are important components of the Internet of things. The full distributed optical fiber sensor network (Rayleigh, Raman, and Brillouin scattering) is a 3S (smart materials, smart structure, and smart skill) system, which is easy to construct smart fiber sensor networks. The distributed optical fiber sensor can be embedded in the power grids, railways, bridges, tunnels, roads, constructions, water supply systems, dams, oil and gas pipelines and other facilities, and can be integrated with wireless networks.
机译:简要概述了中国吉良大学(CJLU)的全分布式光纤拉曼光子传感器的研究,生产和应用的最新进展。为了提高测量距离,精度,空间分辨率,多参数测量能力以及全分布式光纤传感器系统的智能性,提出了一种基于光纤非线性散射融合原理的新一代光纤传感器技术。 。研究和设计了一系列新一代全分布式光纤传感器,包括与光纤拉曼放大器集成在一起的新一代超长距离全分布式光纤拉曼和瑞利散射光子传感器,基于自动校正的全分布式光纤拉曼光子温度传感器拉曼相关双源,基于脉冲编码源的全分布式光纤拉曼光子温度传感器,使用光纤拉曼波长移位器的全分布式光纤拉曼光子温度传感器,与光纤集成的新型布里渊光时域分析仪(BOTDA)拉曼放大器用于取代光纤布里渊放大器,集成了光纤拉曼放大器的全分布式光纤拉曼和布里渊光子传感器以及集成了光纤布里渊移频器的全分布式光纤布里渊光子传感器,人们相信物联网是其中之一下一次技术革命带动了数以亿计的阶级市场。传感器网络是物联网的重要组成部分。完整的分布式光纤传感器网络(瑞利,拉曼和布里渊散射)是一个3S(智能材料,智能结构和智能技能)系统,易于构建智能光纤传感器网络。分布式光纤传感器可以嵌入电网,铁路,桥梁,隧道,道路,建筑,供水系统,水坝,油气管道等设施中,并且可以与无线网络集成。

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