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Temperature sensing system with high signal-to-noise ratio and large temperature sensing range based on multiwavelength Brillouin fiber laser

机译:基于多波长布里渊光纤激光器的高信噪比,大温度感应范围的温度感应系统

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摘要

A double-ring resonator temperature sensing system based on a multiwavelength Brillouin fiber laser (MBFL) is proposed and demonstrated experimentally. In the two ring resonators, a 3.2-km long dispersion shifted fiber is used as the sensing fiber while a 3.2-km long dispersion compensating fiber is the reference. Second-order Stokes light generated by two gain fibers are used as the beat frequency to obtain the microwave signal. The frequency of the signal is 1.657 GHz, which avoids the low frequency noise region, and the signal has a high signal-to-noise ratio of 39 dB. A change in the center frequency of the beat frequency microwave signal accurately corresponds with the temperature changing. The sensitivity of temperature is 2.26 MHz/℃ in the condition of the sensing temperature being from 5℃ to 85℃ and the reference temperature being 25℃. Obviously, the MBFL can sense temperature not only below the reference but also above it; thus the scheme has a larger temperature sensinq ranqe.
机译:提出了一种基于多波长布里渊光纤激光器(MBFL)的双环谐振腔温度传感系统,并进行了实验验证。在两个环形谐振器中,将3.2公里长的色散位移光纤用作传感光纤,而将3.2公里长的色散补偿光纤用作参考光纤。由两条增益光纤产生的二阶斯托克斯光被用作拍频,以获得微波信号。信号的频率为1.657 GHz,避免了低频噪声区域,并且信号具有39 dB的高信噪比。拍频微波信号的中心频率的变化准确地对应于温度变化。在感测温度为5℃至85℃,参考温度为25℃的条件下,温度灵敏度为2.26 MHz /℃。显然,MBFL不仅可以感应参考以下的温度,还可以感应参考上方的温度。因此,该方案具有较大的温度范围。

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