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Development of laser light source with high stability for Brillouin optical fiber sensor

机译:用于布里渊光纤传感器的高稳定性激光光源的开发

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摘要

Temperature and strain measurement accuracy of Brillouin distributed optical fiber sensor are easily influenced by the performance of laser light source. A wavelength/power DFB semiconductor laser light source with high-stability used for Brillouin Fiber Sensing is designed. The laser light source works with constant-current drive circuit and temperature control circuit, which precisely controls drive current and operating temperature of the DFB semiconductor laser and makes the wavelength and optical power under control. The results show that: (1)the optical wavelength increases about 0.1nm and the power reduces about 0.05dBm when the temperature increased by 1 ℃ . (2)The maximum drift of wavelength is 0.012nm and the maximum drift of optical power is 0.05dBm (0.0014mW) at 25 ℃ within one hour. The laser light source can completely meet the demand for Brillouin distributed optical fiber sensing.
机译:布里渊分布式光纤传感器的温度和应变测量精度容易受到激光光源性能的影响。设计了用于布里渊光纤传感的具有高稳定性的波长/功率DFB半导体激光光源。激光光源与恒流驱动电路和温度控制电路一起工作,该电路可精确控制DFB半导体激光器的驱动电流和工作温度,并控制波长和光功率。结果表明:(1)温度每升高1℃,光波长增加约0.1nm,功率降低约0.05dBm。 (2)在25℃下,在一小时内,波长的最大漂移为0.012nm,光功率的最大漂移为0.05dBm(0.0014mW)。激光光源完全可以满足布里渊分布式光纤传感的需求。

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