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Long-range BOTDA sensor over 50 km distance employing pre-pumped Simplex coding

机译:采用预抽式Simplex编码的50公里范围内的远程BOTDA传感器

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摘要

We propose and demonstrate a long-range Brillouin optical time-domain analysis (BOTDA) sensor based on the pre-pumped Simplex coding technique. This approach combines Simplex coding with the pulse pre-pump technique, which takes full advantage of the signal-to-noise ratio enhancement provided by optical pulse coding and achieves meter-scale spatial resolution with an unbroadened Brillouin gain spectrum by the use of pre-pumped short pump pulse. Compared to the widely used differential pulse-width pair technique, a comparable performance can be realized while the measurement time is reduced by half. The theoretical analysis of pre-pumped Simplex coding applied to BOTDA systems is presented and a proof-of-concept experiment is carried out along a similar to 51 km single-mode fiber composed of two fiber segments with slightly different Brillouin frequency shift values. With the proposed technique, Brillouin frequency shifts of the two different fiber sections at the end of the sensing fiber are clearly distinguished, and the obtained spatial resolution and temperature/strain accuracy along the sensing fiber are respectively 1 m and 0.4 degrees C/8 mu epsilon. According to the experimental results, we believe that the BOTDA employing pre-pumped Simplex coding is able to realize extra-long distance sensing without Raman amplification, while keeping a high spatial resolution and measurement accuracy.
机译:我们提出并演示了基于预泵单纯形编码技术的远程布里渊光时域分析(BOTDA)传感器。这种方法将单纯形编码与脉冲预泵技术相结合,该技术充分利用了光脉冲编码所提供的信噪比增强功能,并通过使用预采样来实现米级的空间分辨率和未扩展的布里渊增益频谱泵浦短泵脉冲。与广泛使用的差分脉冲宽度对技术相比,可以在将测量时间减少一半的同时实现可比的性能。提出了应用于BOTDA系统的预泵单纯形编码的理论分析,并沿着类似于51 km的单模光纤进行了概念验证实验,该单模光纤由两个具有布里渊频移值稍有不同的光纤段组成。利用所提出的技术,可以清楚地区分传感光纤末端的两个不同光纤部分的布里渊频移,并且沿传感光纤获得的空间分辨率和温度/应变精度分别为1 m和0.4摄氏度/ 8微米epsilon。根据实验结果,我们相信采用预泵单纯形编码的BOTDA能够在不进行拉曼放大的情况下实现超长距离传感,同时保持较高的空间分辨率和测量精度。

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