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Fiber optic intrusion sensing based on coherent optical time domain reflectometry

机译:基于相干光学时域反射测量法的光纤入侵检测

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The Raileigh back scattering of a highly coherent laser pulse in a single mode optical fiber has been simulated. An array of retro reflectors was used to simulate a scattering medium. Both amplitude and phase of the reflected waves were random. It has been shown that the reflectometry signal is not smooth (exponential) as in a usual non-coherent reflectometer. About 100 percent contrast in a chaotic signal is achievable provided the laser has single frequency, i.e. generation spectrum is limited by pulse duration. This chaotic signal nevertheless is stable in time if phase changes in the sensing fiber are negligible. Any mechanical impact leads to a phase shift in the sensing fiber. Due to local interference scattering signal changes, the location of impact can be easily calculated knowing light velocity in the sensing fiber. In our model, a harmonic in time mechanical influence was applied to the fiber pointwise. The sensitivity in different points of the fiber is quite random, and the same low amplitude impact may be transformed to a positive, negative or nearly zero signal. The reasons of such behavior are discussed as well as the methods to enhance the system sensitivity. The results of computer simulations were compared with experimental data and satisfactory conformity was obtained. In conclusion, the coherent optical time domain reflectometry seems to be very prospective for development of intrusion sensing systems of high (interference) sensitivity, precise impact localization, low error rate and low cost.
机译:已经模拟了单模光纤中高度相干激光脉冲的铁路散射。一系列复古反射器用于模拟散射介质。反射波的两个幅度和相位是随机的。已经表明,反射计数器信号不平滑(指数),如通常的非相干仪中。提供了大约100%的混沌信号对比度,提供了激光具有单频,即产生频谱受脉冲持续时间的限制。然而,如果感测光纤中的相变可忽略不计,则这种混沌信号在时间上稳定。任何机械冲击都会导致传感纤维的相移。由于局部干扰散射信号发生变化,可以容易地计算感测光纤中的光速的冲击位置。在我们的模型中,谐波时,在纤维上施加到纤维上。纤维不同点的敏感性是非常随机的,并且可以将相同的低幅度撞击变换为正,负或几乎零信号。讨论了这种行为的原因以及提高系统敏感性的方法。将计算机模拟结果与实验数据进行比较,获得令人满意的符合性。总之,相干光学时域反射率似乎是对高(干扰)灵敏度,精确的冲击定位,低差错率和低成本的入侵感测系统的开发非常前景。

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