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首页> 外文期刊>Optics Letters >Polarization discrimination in a phase-sensitive optical time-domain reflectometer intrusion-sensor system
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Polarization discrimination in a phase-sensitive optical time-domain reflectometer intrusion-sensor system

机译:相敏光时域反射仪入侵传感器系统中的偏振辨别

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摘要

A distributed sensor system for detecting and locating intruders based on a phase-sensitive optical time-domain reflectometer (psi-OTDR) that utilizes polarization discrimination is described. The sensing element is a single-mode telecommunications fiber in a 3 mm diameter cable buried along a monitored perimeter in a 20-46 cm deep, 10 cm wide trench in clay soil. Light pulses from a continuous-wave Er fiber Fabry-Perot laser with a narrow (<3 kHz) instantaneous linewidth and low (a few Kilohertz per second) frequency drift are injected into one end of the fiber, and the orthogonal polarizations of the backscattered light are monitored with separate receivers. Localized phase changes in the optical carrier are sensed by subtraction of a psi-OTDR trace from an earlier stored trace. In field tests with a monitored length of 12 km, detection of intruders on foot as far as 4.5 m from the cable line was consistently achieved.
机译:描述了一种基于传感器的分布式传感器系统,该系统基于利用偏振辨别的相敏光学时域反射仪(psi-OTDR)进行检测和定位。传感元件是一条单模电信光纤,其直径为3 mm,沿着受监控的周长埋在20-46 cm深,10 cm宽的粘土沟中。来自连续波Er光纤Fabry-Perot激光器的光脉冲具有窄(<3 kHz)的瞬时线宽和低(每秒几千赫兹)的频率漂移,被注入到光纤的一端,并且反向散射的正交偏振光线由单独的接收器监控。通过从较早存储的迹线中减去psi-OTDR迹线,可以检测出光学载体中的局部相位变化。在监测长度为12 km的现场测试中,始终可以检测到距离电缆线4.5 m处的步行入侵者。

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