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基于后向相干瑞利散射的分布式光纤传感在管道安全实时监测中的应用研究
Application of pipeline safety real-time monitoring with distributed optical fiber sensing technique based on coherent Rayleigh backscattering

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严冰 1   董凤忠 1   张晓磊 1   陈学义 1   李俊 2   涂郭结 1   陈雪军 1   Culshaw Brian 3  
文摘 开展了基于光纤后向相干瑞利散射原理的分布式光纤传感在管道安全实时监测系统中的信号数值模拟和实验研究。采用多个连续脉冲周期光纤相干后向瑞利散射光在有扰动情况的一维脉冲响应理论模型,解释了外部扰动对整个后向瑞利散射信号的影响。并且对理论模型进行数值模拟,直观展示了相干后向瑞利散射光功率关系曲线;通过对4 km长度的光纤进行扰动传感实验,有效地定位了扰动的发生;并且提出了一种利用软件寻峰归一化提高后向瑞利散射功率信号信噪比的方法,可以减少平均次数,从而增大可提取扰动频率范围。
其他语种文摘 Preliminary investigation for pipeline safety real-time monitoring with distributed fiber optic sensing technique based on coherent Rayleigh backscattering was carried out. On the basis of a novel one-dimensional impulse-response model of coherent Rayleigh backscattering in fiber, the influence of backscattering power curve with multiple continuous input pulses under external disturbance was explained. Coherent Rayleigh backscattering light power curve was visually presented through numerical simulations with the theoretical model. In order to demonstrate the model, an experimental measurement with 4 km-long single-mode sensing fiber was performed and the position where the disturbance occurs was easily found. To improve the SNR, a normalization method of peak-seeking with software was introduced. This method can effectively reduce average number and enhance the maximum detectable frequency range of external disturbance.
来源 量子电子学报 ,2013,30(3):341-347 【核心库】
关键词 纤维与波导光学 ; 分布式光纤传感 ; 相干瑞利散射 ; 管道安全 ; 相位敏感
地址

1. 中国科学院安徽光学精密机械研究所, 安徽, 合肥, 230031  

2. Department of Engineering and Physics Science, Heriot-Watt University, United Kingdom, Edinburgh  

3. Department of Electrical and Electronic Engineering, Strathclyde University, United Kingdom, Glasgow

语种 中文
文献类型 研究性论文
ISSN 1007-5461
学科 自动化技术、计算机技术
基金 工业横向开发项目 ;  中科院资深外籍特聘研究员计划资助项目
文献收藏号 CSCD:4856181

参考文献 共 10 共1页

1.  Li Xinhua. Comparison of characteristics of commonly-used distributed optical fiber sensors. 光通信技术,2007,31(5):14-18 CSCD被引 2    
2.  Shi Xiaolin. Research on the application of information fusion in oil pipeline leakage detection. 自动化仪表,2011,32(7):38-40 CSCD被引 1    
3.  Zhang Zaixuan. The optimum design of distributed optical fiber Raman photon sensor(DOFRPS) system. 光电子·激光,1999,10(2):110-112 CSCD被引 2    
4.  Juarez J C. Distributed fiber-optic intrusion sensor system. Journal of Lightwave Technology,2005,23(6):2081-2087 CSCD被引 105    
5.  Juarez J C. Field test of a distributed fiber-optic intrusion sensor system for long perimeters. Appl Opt,2007,46(11):1968-1971 CSCD被引 52    
6.  Yahei Koyamada. Fiber-optic distributed strain and temperature sensing with very high measurand resolution over long range using cherent OTDR. Journal of Lightwave Technology,2009,27(9):1142-1146 CSCD被引 35    
7.  Lu Yuelan. Investigation on Rayleigh scattering waveform in phase optical time domain reflec-tometer. 光学学报,2011,31(8):1-5 CSCD被引 6    
8.  Luo Jun. Highly sensitive distributed optical fiber intrusion monitoring system. 仪器仪表学报,2009,30(6):1123-1128 CSCD被引 3    
9.  Xie Kongli. Distributed optical fiber sensing system based of Rayleigh scattering light φ-OTDR using single-mode fiber laser with high power and narrow linewidth. 光学学报,2008,28(3):569-572 CSCD被引 12    
10.  Lu Yuelan. Distributed vibration sensor based on coherent detection of phase-OTDR. Journal of Lightwave Technology,2010,28(22):3243-3249 CSCD被引 75    
引证文献 3

1 郑元辽 光纤传感监测压力管道泄漏技术进展综述 传感器与微系统,2014,33(9):15-17,21
CSCD被引 6

2 王放 土壤温度对光纤预警系统中振动信号的影响 光学技术,2016,42(5):420-423,430
CSCD被引 1

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