双探头增强布里渊光时域分析仪信噪比

Haritz Iribas, A. Loayssa, F. Sauser, M. Llera, S. Le Floch
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引用次数: 1

摘要

我们演示了一种简单的技术,通过增加增益和损耗过程来提高布里渊光时域分析传感器的信噪比(SNR)。该技术是基于双边带探测系统中泵浦光频的移位,使得增益和损耗过程发生在不同的频率上。通过这种方式,损耗和增益不会相互抵消,并且可以同时利用这两个信息,从而获得3 dB的信噪比改进。此外,该技术不需要光学滤波,因此获得了更大的信噪比改善和简化的设置。该方法在101 km的光纤线轴上进行了实验验证,在最差对比度位置获得了2.6 MHz (2σ)的测量不确定度,空间分辨率为2 m。这导致,据我们所知,在不使用编码或拉曼放大的情况下,在BOTDA中获得最高的性能值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancement of signal-to-noise ratio in Brillouin optical time domain analyzers by dual-probe detection
We demonstrate a simple technique to enhance the signal-to-noise ratio (SNR) in Brillouin optical time-domain analysis sensors by the addition of gain and loss processes. The technique is based on the shift of the pump pulse optical frequency in a double-sideband probe system, so that the gain and loss processes take place at different frequencies. In this manner, the loss and the gain do not cancel each other out, and it makes possible to take advantage of both informations at the same time, obtaining an improvement of 3 dB on the SNR. Furthermore, the technique does not need an optical filtering, so that larger improvement on SNR and a simplification of the setup are obtained. The method is experimentally demonstrated in a 101 km fiber spool, obtaining a measurement uncertainty of 2.6 MHz (2σ) at the worst-contrast position for 2 m spatial resolution. This leads, to the best of our knowledge, to the highest figure-of-merit in a BOTDA without using coding or raman amplification.
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