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Investigation of Polarization Nonreciprocity in Dual-interference Fiber Optical Gyroscope

机译:双干涉光纤陀螺仪的偏振不可逆性研究

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摘要

The dual-interference fiber optical gyroscope (DIFOG) is a novel gyroscope that makes use of both birefringent axes in a polarization maintained fiber to generate two Sagnac interferometers. The Sagnac effect is doubled in the DIFOG, resulting in the same precision for a smaller fiber coil and shorter fiber, so it has some potential applications in miniaturized and low-cost situations. The mechanism of polarization nonreciprocity (PNR) in the DIFOG is investigated and the influence of PNR is analyzed theoretically. Simulation results based on the theoretical analysis indicate that PNR error causes the bias of interference signals and the output of the DIFOG to vary with the inherent nonreciprocal phase that arises from the optical configuration. The experiment verifies the theoretical and simulation results.
机译:双干涉光纤陀螺仪(DIFOG)是一种新颖的陀螺仪,它利用保偏光纤中的两个双折射轴来生成两个Sagnac干涉仪。 Sagnac效应在DIFOG中被加倍,从而对于较小的光纤线圈和较短的光纤具有相同的精度,因此在小型化和低成本情况下具有某些潜在的应用。研究了DIFOG中的极化不可逆性(PNR)机理,并从理论上分析了PNR的影响。基于理论分析的仿真结果表明,PNR误差会导致干扰信号的偏置,并且DIFOG的输出会随由光学配置引起的固有不可逆相位而变化。实验验证了理论和仿真结果。

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