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Reliability of stable fiber Bragg grating sensor system for monitoring temperature and strain individually

机译:稳定光纤布拉格光栅传感器系统的可靠性,用于单独监测温度和应变

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摘要

In the investigation, the fiber Bragg grating-based sensor system is proposed and demonstrated to monitor temperature and strain individually. In order to obtain a stable and accurate sensing signal, an erbium-doped fiber (EDF) ring laser scheme with a 2 m long unpumped EDF as the saturable absorber is also proposed. Hence, the observed stabilization of output power and sensing wavelength can be less than 0.1 dB and 0.02 nm, and 0.3 dB and 0.02 nm in the sensor system, respectively, in the back-to-back state and 25 km fiber link. Hence, this sensor system can improve the output stability of the sensing signal. In addition, the temperature- and strain-induced wavelength shifts can be operated in the range of 20 degrees C-70 degrees C and 0-37 500 mu epsilon, respectively.
机译:在调查中,提出了基于光纤布拉格光栅的传感器系统,并证明了单独监测温度和应变。 为了获得稳定且精确的感测信号,还提出了一种掺铒光纤(EDF)环激光方案,其具有2M长的未溢出的EDF作为可饱和吸收剂。 因此,在背对背状态和25km光纤链路中,观察到的输出功率和感测波长的稳定性可以小于0.1dB和0.02nm,以及0.3dB和0.02nm。 因此,该传感器系统可以提高传感信号的输出稳定性。 另外,温度和应变诱导的波长偏移分别可以分别在20摄氏度的范围内操作和0-37500μmepsilon。

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