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2 cm spatial-resolution and 2 km range Brillouin optical fiber sensor using a transient differential pulse pair

机译:使用瞬态差分脉冲对的2 cm空间分辨率和2 km范围的布里渊光纤传感器

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摘要

We report a high-spatial-resolution and long-range distributed temperature sensor through optimizing differential pulse-width pair Brillouin optical time-domain analysis (DPP-BOTDA). In DPP-BOTDA, the differential signal suffers from a signal-to-noise ratio (SNR) reduction with respect to the original signals, and for a fixed pulse-width difference the SNR reduction increases with the pulse width. Through reducing the pulse width to a transient regime (near to or less than the phonon lifetime) to decrease the SNR reduction after the differential process, the optimized 8/8.2 ns pulse pair is applied to realize a 2 cm spatial resolution, where a pulse generator with a 150 ps fall-time is used to ensure the effective resolution of DPP-BOTDA. In the experiment, a 2 cm spatial-resolution hot-spot detection with a 2 deg C temperature accuracy is demonstrated over a 2 km sensing fiber.
机译:我们通过优化差分脉宽对布里渊光学时域分析(DPP-BOTDA)报告了一种高空间分辨率和远程分布式温度传感器。在DPP-BOTDA中,差分信号相对于原始信号会遭受信噪比(SNR)的降低,并且对于固定的脉冲宽度差,SNR的降低会随脉冲宽度的增加而增加。通过将脉冲宽度减小到瞬态状态(接近或小于声子寿命)以减少微分处理后的SNR降低,优化的8 / 8.2 ns脉冲对可实现2 cm的空间分辨率,其中一个脉冲下降时间为150 ps的发生器用于确保DPP-BOTDA的有效分辨率。在实验中,在2 km的传感光纤上演示了2 cm的空间分辨率热点检测,温度精度为2℃。

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