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具有厘米级分辨率和数百米传感范围的分布式温度传感器。

Distributed temperature sensor combining centimeter resolution with hundreds of meters sensing range.

作者信息

Gasser Julien, Warpelin Daryl, Bussières Félix, Extermann Jérôme, Pomarico Enrico

出版信息

Opt Express. 2022 Feb 28;30(5):6768-6777. doi: 10.1364/OE.451699.

Abstract

We present a Raman distributed temperature sensor based on standard telecom single mode fibers and efficient polarization-independent superconducting nanowire single photon detectors. Our device shows 3 cm and 1.5 °C resolution on a 5 m fiber upon one minute integration. We show that spatial resolution is limited by the laser pulse width and not by the detection system. Moreover, for long fibers the minimum distance for a measurable temperature step change increases of around 4 cm per km length, because of chromatic dispersion at the Stokes and Anti-Stokes wavelengths. Temperature resolution is mainly affected by the drop in the laser repetition rate when long fibers are tested. On a 500 m fiber, a trade-off of 10 cm and 8 °C resolution is achieved with 3 minutes integration. Fiber-based distributed temperature sensing, combining centimetric spatial resolution with hundreds of meters sensing range, could pave the way for a new kind of applications, such as 2D and 3D temperature mapping of complex electronic devices, particles detectors, cryogenic and aerospace instrumentation.

摘要

我们展示了一种基于标准电信单模光纤和高效偏振无关超导纳米线单光子探测器的拉曼分布式温度传感器。我们的设备在5米长的光纤上进行一分钟积分时,显示出3厘米的空间分辨率和1.5摄氏度的温度分辨率。我们表明,空间分辨率受激光脉冲宽度限制,而非检测系统。此外,对于长光纤,由于斯托克斯和反斯托克斯波长处的色散,可测量温度阶跃变化的最小距离每公里长度增加约4厘米。测试长光纤时,温度分辨率主要受激光重复率下降的影响。在500米长的光纤上,通过3分钟积分可实现10厘米空间分辨率和8摄氏度温度分辨率的权衡。基于光纤的分布式温度传感,将厘米级空间分辨率与数百米传感范围相结合,可为新型应用铺平道路,如复杂电子设备、粒子探测器、低温和航空航天仪器的二维和三维温度映射。

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