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Resonant Fiber Optic Gyroscope Using an Air-Core Fiber

机译:使用空芯光纤的谐振光纤陀螺仪

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Air-core photonic bandgap fibers (PBFs) have great potential for the resonant fiber-optic gyroscope (RFOG), because they reduce both the Kerr-induced drift and the thermal polarization instability. We experimentally studied an open-loop RFOG in which a 20-m resonant loop of 7-cell air-core fiber is closed by connecting the air-core fiber to a conventional single-mode fiber directional coupler. We measured a random walk of 0.055 $^{circ}$/s $^{1/2}$ and a long-term drift with a standard deviation of 0.5$^{circ}$ /s and a peak-to-peak variation of 2.5 $^{circ}$/s over 1 hour. We discuss the sources of error in this RFOG and identify areas for future improvement. We project that with straightforward improvements, tactical-grade performance should be possible.
机译:空心光子带隙光纤(PBF)对于共振光纤陀螺仪(RFOG)具有巨大潜力,因为它们既减少了Kerr引起的漂移,又减小了热极化不稳定性。我们通过实验研究了一个开环RFOG,其中通过将空芯光纤连接到传统的单模光纤定向耦合器来闭合20芯7芯空芯光纤的谐振环。我们测量了0.055 $ ^ {circ} $ / s $ ^ {1/2} $的随机游走和标准偏差为0.5 $ ^ {circ} $ / s的长期漂移和峰峰值1小时内变化2.5 $ ^ {circ} $ / s。我们讨论了该RFOG中的错误源,并确定了需要改进的地方。我们预计,通过直接的改进,战术级的性能应该是可能的。

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