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Bias Error Caused by the Faraday Effect in Fiber Optical Gyroscope With Double Sensitivity

机译:双灵敏度光纤陀螺仪中法拉第效应引起的偏置误差

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We present an investigation of bias error caused by the Faraday effect in interferometric fiber optical gyroscopes (IFOGs) with double sensitivity. Jones matrix method is utilized to formulize the bias error in IFOGs with double sensitivity under the action of radial magnetic field. Theoretical results show that the bias error caused by the Faraday effect can be suppressed effectively in IFOGs with double sensitivity. Experiments with different lengths and twists of fiber coils are performed, and the experimental results support these theoretical predictions. For 490- and 1020-m polarization maintaining fiber coils, the maximum errors generated by a 1-mT radial magnetic field are 0.8°/h and 0.5°/h, respectively. This letter is promising for improving the bias stability of IFOGs.
机译:我们目前对具有双灵敏度的干涉式光纤陀螺仪(IFOG)中的法拉第效应引起的偏置误差进行了研究。利用琼斯矩阵方法在径向磁场的作用下,以双灵敏度公式化了IFOG中的偏置误差。理论结果表明,在具有双重灵敏度的IFOG中,可以有效地抑制由法拉第效应引起的偏置误差。进行了不同长度和纤维线圈扭曲的实验,实验结果支持了这些理论预测。对于490和1020 m保偏光纤线圈,由1-mT径向磁场产生的最大误差分别为0.8°/ h和0.5°/ h。这封信有望改善IFOG的偏置稳定性。

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