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Stability improvement enabled by four-state modulation in dual-polarization fiber optic gyroscopes

机译:双极化光纤陀螺仪中的四态调制使能改进

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摘要

A four-state modulation scheme is proposed to improve the stability performance of a dual-polarization fiber optic gyroscope (IFOG) operating under an open-loop configuration, overcoming the dead-zone issue that occurs in a closed-loop configuration and achieving a better signal-to-noise ratio (SNR) than conventional sinusoidal modulation. We prove theoretically and demonstrate experimentally that owing to the cross-coupling between the two orthogonal light polarizations co-existing in the dual-polarization IFOG, the rotation rate is not rigorously solvable under square-wave modulation. Instead, four-state modulation accurately extracts the rotation rate, even when the cross-coupling strength varies in time. An improved angular random walk (ARW) of 2.2x10(-4) degrees /root h and bias instability (BI) of 3.5x10(-4) degrees/h were achieved in detecting the rotation rate of the Earth, verifying the effectiveness of the proposed method.
机译:提出了一种四态调制方案,提高了在开环配置下运行的双偏振光纤陀螺(IFOG)的稳定性性能,克服了闭环配置中发生的死区问题并实现更好 信噪比(SNR)比传统的正弦调制。 理论上我们证明并实验证明,由于在双极化IFOG中共存的两个正交光偏振之间的交叉耦合,旋转速率在方波调制下不严格溶解。 相反,四个状态调制精确提取旋转速率,即使交叉耦合强度随时间变化也是如此。 在检测到地球的旋转速率下,实现了2.2×10(-4)度/根H和偏置不稳定性(BI)的改进的角度随机步行(ARW)和3.5x10(-4)度/ h的偏置不稳定性(bi),验证了效果 所提出的方法。

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