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Enhancing the measurement range of a Brillouin-based fiber optic distributed-temperature sensor by improving receiver sensitivity through optical preamplification

机译:通过改善通过光预浆化改善接收器灵敏度来增强布里渊基的光纤分布式温度传感器的测量范围

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We report on the use of a cost-effective erbium-doped based optical preamplifier in a single-ended distributed fiber-optic sensor to improve receiver sensitivity and hence measurement range. The improved accuracy of spontaneous Brillouin measurements was demonstrated in a 23km sensor and was limited by amplified spontaneous emission from the preamplifier, which was verified theoretically. Reduction of amplified spontaneous emission was achieved with a 0.37nm in-fiber Bragg grating. A signal-to-noise improvement of 17dB was achieved and supported by theory, which translates to approximately 40km range improvement for a single-mode sensing fiber having losses of 0.2dB/km at 1550nm.
机译:我们报告在单端分布式光纤传感器中使用经济高效的基于掺铒光学前置放大器,以提高接收器灵敏度并因此进行测量范围。在23km的传感器中证明了自发布里渊测量的提高精度,并且通过从理论上验证了前置放大器的自发发射而受到限制。用0.37nm纤维布拉格光栅实现扩增的自发排放。通过理论实现和支持17dB的信号 - 噪声改善,其转化为约40km的范围改进,对于在1550nm下的损失0.2dB / km的单模感测光纤。

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