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Distributed vibration sensing over 125 km with enhanced SNR using Phi-OTDR over a URFL cavity

机译:使用URFL腔上的Phi-OTDR在125 km上进行分布式振动感应并增强SNR

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摘要

© 2015 IEEE. We describe the use of a phase-sensitive optical time domain reflectometer (φOTDR) over an ultra-long Raman fiber laser cavity allowing fully distributed detection of vibrations over 125 km. Compared to a first-order Raman-assisted φOTDR, this scheme shows an enhanced signal-to-noise ratio (SNR). This is due to the fact that the relative intensity noise introduced by the Raman amplification is mostly transferred to a lower frequency range, where the balanced detection implemented in the setup provides better suppression of the common-mode noise. The sensor was able to measure vibrations of up to 380 Hz (limit set by the time of flight of light pulses) in a distance of 125 km with a resolution of 10 m and an average SNR of 8 dB with no postprocessing. This implies a >3 dB improvement in SNR over a first-order Raman-assisted setup with similar characteristics.
机译:©2015 IEEE。我们描述了在超长拉曼光纤激光腔上使用相敏光时域反射仪(φOTDR),从而可以完全分布式检测125 km以上的振动。与一阶拉曼辅助φOTDR相比,此方案显示出增强的信噪比(SNR)。这是由于以下事实:拉曼放大引入的相对强度噪声大部分转移到较低的频率范围,在该频率范围内,通过设置实现的平衡检测可以更好地抑制共模噪声。该传感器能够在125 km的距离内测量高达380 Hz的振动(由光脉冲的飞行时间设置的极限),分辨率为10 m,平均SNR为8 dB,无需进行后处理。这意味着与具有类似特性的一阶拉曼辅助设置相比,SNR的改善幅度> 3 dB。

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