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Distributed optical fiber disturbance sensing system based on semiconductor laser with optical feedback and ring interferometer

机译:基于半导体激光器的光反馈和环形干涉仪的分布式光纤干扰传感系统

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A novel distributed optical fiber disturbance sensing system based on a feedback semiconductor laser and a fiber-ring as a self-mixing interferometer is proposed and demonstrated. When an external disturbance acts on the sensing fiber, a phase change in the light beam propagating in the fiber-ring will be induced, which in-turn is converted into an intensity modulation in the laser output through a feedback light interference in the laser and a nonlinear optical amplification by the laser. The sensor output signals can be obtained directly from the laser module equipped with an internal photodiode. The primary experiments were carried out and the results show that the RMS value of output electrical signal has a linear relation with the disturbance position, so this feature can be utilized as a means of localizing disturbances along the sensing fiber. The maximum location error obtained in our experiments is about 27 m within a 1-km long sensing fiber. Therefore, the proposed sensing system and location method are feasible. Moreover, the system is high in the sensitivity and simple in the structure as well as in signal processing.
机译:提出并演示了一种基于反馈半导体激光器和光纤环作为自混合干涉仪的新型分布式光纤干扰传感系统。当外部干扰作用在传感光纤上时,将在光纤环中传播的光束中引起相变,进而通过激光器中的反馈光干涉将其转换为激光器输出中的强度调制。激光的非线性光学放大。传感器输出信号可以直接从配备有内部光电二极管的激光模块获得。进行了初步实验,结果表明,输出电信号的RMS值与干扰位置呈线性关系,因此该功能可以用作沿传感光纤定位干扰的手段。在我们的实验中,在1公里长的感应光纤中,最大定位误差约为27 m。因此,所提出的传感系统和定位方法是可行的。而且,该系统灵敏度高,并且结构以及信号处理简单。

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