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Scale-Factor Stability Control Technique for Closed-Loop All-Fiber Interferometric Optical Gyroscope

机译:闭环全纤维干涉光学陀螺光学稳定性控制技术

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The paper presents an effective method for scale-factor stabilization and modulation depth control in a low-cost all-fiber interferometric gyroscope utilizing a piezoelectric phase modulator to perform modulation for biasing as well as compensation of the Sagnac phase shift in a closed-loop. The technique uses a virtual-sensor approach consisting in deriving the actual compensation shift from comparison of the real and the modeled gyroscope output intensity signals. The first experimental results are provided, suggesting that the model-base approach can decrease the scale-factor drift by more than one order of magnitude to reduce significantly the effect of the modulator parameter instability.
机译:本文介绍了利用压电相调制器的低成本全纤维干涉陀螺仪中的比例因子稳定和调制深度控制的有效方法,以进行偏置的调制以及在闭环中的SAGNAC相移的补偿。 该技术使用虚拟传感器方法,该方法包括从实际和模型陀螺仪输出强度信号的比较中导出的实际补偿偏移。 提供了第一种实验结果,表明模型基础方法可以减少比例因子漂移多个数量级,以显着降低调制器参数不稳定性的效果。

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