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Spontaneous Brillouin distributed optical fiber temperature sensing system based on all fiber Mach-Zehnder interferometer

机译:基于全光纤马赫曾德尔干涉仪的自发布里渊分布式光纤温度传感系统

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Based on the temperature dependence of the intensity of Brillouin scattering in optical fiber, a distributed optical fiber temperature sensing experimental system with Brillouin OTDR configuration was presented. In this system, a narrow line width LD was used as a light source. The output of LD was modulated into light pulses by an AOM. After amplified by an EDFA the light pulses were coupled into the test fiber to generate backscattering signal. A double-pass Mach-Zehnder interferometer was used to separate the spontaneous Brillouin scattering from the Rayleigh scattering. The temperature sensing experiments were carried out on two different length of fibers which were 4.25 km and 22 km long, respectively. The intensity changes in the Brillouin scattering signals due to temperature variation on both of the fibers were measured.
机译:基于布里渊散射在光纤中的强度与温度的关系,提出了一种采用布里渊OTDR配置的分布式光纤温度传感实验系统。在该系统中,使用窄线宽LD作为光源。 LD的输出通过AOM调制为光脉冲。经EDFA放大后,光脉冲被耦合到测试光纤中以产生反向散射信号。使用双通道马赫曾德尔干涉仪将自发的布里渊散射与瑞利散射区分开。温度感测实验是在两种不同长度的纤维上进行的,分别为4.25 km和22 km。测量了由于两种纤维上的温度变化引起的布里渊散射信号的强度变化。

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