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A nonlinear mirror structure to increase the performance of the distributed fiber temperature sensor based on Raman backscattering

机译:一种基于拉曼反向散射的分布式光纤温度传感器的性能增加非线性镜像结构

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We propose a novel nonlinear mirror structure that can increase the optical signal-to-noise ratio of a distributed fiber Raman temperature sensor. The nonlinear mirror is constructed by a four-port 3 dB coupler, which links two sensing optical fibers. The two sensing fibers make a bunch, and sense the same circumstance. When the quasi-continuous wave optical light is injected, the 3 dB coupler forms a backscattering nonlinear mirror, and reflects the whole scattering signals from the two sensing fibers into the receiver. Due to the constructive inference of the nonlinear mirror, the signal received by the detector is as four times higher as the case that uses a single sensing optical fiber. Thus, 6 dB improvement of the optical signal-to-noise ratio is obtained. The theoretical analysis and the experimental data are presented, which shows an agreement between each other. With the assistance of the nonlinear mirror, we demonstrate the spatial resolution of the sensor is improved from 3 meter to 1 meter, and the temperature accuracy is improved from plusmn0.6degC to plusmn0.2degC. The proposed nonlinear mirror structure can be extended to employ more sensing fibers, which can further improve the system performance.
机译:我们提出了一种新颖的非线性镜结构,可以提高分布式光纤拉曼温度传感器的光学信噪比。非线性镜由四端口3dB耦合器构成,其链接两个感测光纤。两个传感纤维产生一堆,感知同样的情况。当注入准连续波光学光时,3dB耦合器形成反向散射非线性镜子,并将来自两个感测光纤的整个散射信号反射到接收器中。由于非线性镜的建设性推断,所接收的检测器接收的信号与使用单个传感光纤的情况高一度四倍。因此,获得了光学信噪比的6 dB改善。提出了理论分析和实验数据,这表明彼此之间的协议。在非线性镜子的帮助下,我们证明了传感器的空间分辨率从3米提高到1米,从PLUSMN0.6DEGC到PLUSMN0.2DEGC改善了温度精度。可以扩展所提出的非线性镜结构以采用更多的感测光纤,这可以进一步提高系统性能。

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