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Intruder Signature Analysis from a Phase-sensitive Distributed Fiber-optic Perimeter Sensor

机译:来自相位敏感分布式光纤周边传感器的入侵者签名分析

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Using a phase-sensitive optical time-domain reflectometer developed at Texas A&M University, this paper reports on recent advances in intruder detection and classificatoin for long perimeters or borders. The system uses light pulses from a narrow linewidth CW laser with low frequency drift to interrogate an optical fiber. The backscattered light is detected, and real-time processing of the received signal is performed. Signatures from single and multiple humans on foot, nearby vehicle traffic on a road, construction-like vehicle activity, and animals have been obtained. Individual footsteps are clearly identified and the cadence readily observed. Time-frequency plots are used to compare the signatures. The detected signal contains information regarding the weight of the intruder as well. An adult weighing around 60kg may produce several π-radian shifts in the optical phase, which is detected by the system. While distances up to 20km have been monitored in previous remote field tests, we report measurements on a local test site with a total fiber length of 12km. A 3-mm diameter fiber cable is buried at a depth of 20-46 cm over a distance of 44m, with a 2km spool of fiber attached prior to the buried fiber and a 10km fiber spool connected in series after the buried section. Recent advances in data acquisition and signal processing allow us to avoid false alarms due to drifts in the laser center frequency and greatly improve the probability of detection. With these advancements, this technology is prime for low-cost perimeter monitoring of high-value and high-security installations such as nuclear power plants and military bases as well as national borders.
机译:使用在德克萨斯A&M大学发育的相敏光学时域反射仪,本文报告了入侵者检测和分类的近期进步,用于长周长或边界。该系统使用具有低频漂移的窄线宽CW激光器的光脉冲,以询问光纤。检测到后散射光,并且执行接收信号的实时处理。从单身和多个人的脚部,附近的车辆交通在道路上,已经获得了建筑车辆活动和动物。清楚地识别各个脚步,并且乐曲容易观察。时间频块用于比较签名。检测到的信号包含关于入侵者的权重的信息。大约60kg的成年人可以在光学阶段产生几个π-弧度偏移,由系统检测。在先前的远程现场测试中监视高达20km的距离,我们在本地测试站点上报告了总光纤长度为12km的局部测试站点的测量。 3毫米直径的纤维电缆埋在44米的距离内的深度为20-46厘米,在埋设纤维之前安装了2公里的纤维,并在埋设部分后串联连接的10km纤维卷轴。最近的数据采集和信号处理的进步允许我们避免由于激光中心频率漂移而导致的误报,并且大大提高了检测概率。通过这些进步,这项技术是低成本周边监测的高价值和高安全装置,如核电站和军事基地以及国家边界的素质。

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