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用于抑制法拉第效应引起的偏置误差的光纤陀螺仪。

Fiber-optic gyroscope for the suppression of a Faraday-effect-induced bias error.

作者信息

Yertutanol Aylin, Akçaalan Önder, Öğüt Serdar, Özbay Ekmel, Ceylan Abdullah

出版信息

Opt Lett. 2021 Sep 1;46(17):4328-4331. doi: 10.1364/OL.436195.

Abstract

Inertial rotation sensors, interferometric fiber-optic gyroscopes (IFOGs), are widely used in military and industrial applications due to their high sensitivity and stability. In this Letter, a new, to the best of our knowledge, fiber coil design is proposed to reduce magnetic field sensitivity without adding any optical components or electronic algorithms to the IFOG system. It is shown that this design can be applied without disturbing the simplest IFOG structure. Considering the fact that the magnetic field has an invertible effect on polarization, the compensation of the Faraday-effect-induced bias error has been demonstrated theoretically and experimentally by allowing two different polarizations to travel inside the fiber coil. According to the experimental results, the bias error was reduced approximately 20 times from ±9.6// to ±0.5//.

摘要

惯性旋转传感器,干涉式光纤陀螺仪(IFOG),因其高灵敏度和稳定性而广泛应用于军事和工业领域。在本信函中,据我们所知,提出了一种新的光纤线圈设计,无需在IFOG系统中添加任何光学元件或电子算法即可降低磁场灵敏度。结果表明,这种设计可以在不干扰最简单的IFOG结构的情况下应用。考虑到磁场对偏振具有可逆效应,通过让两种不同的偏振在光纤线圈内传播,从理论和实验上证明了对法拉第效应引起的偏置误差的补偿。根据实验结果,偏置误差从±9.6//降低到了±0.5//,约降低了20倍。

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