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Technique for suppressing the electronic offset drift of interferometric open-loop fiber optic gyroscopes

机译:抑制干涉式开环光纤陀螺仪电子偏移漂移的技术

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摘要

A technique to eliminate the offset drift in the demodulator circuitry of open-loop interferometric fiber optic gyroscopes is presented. This technique employs a demodulation scheme that uses the area of the negative half- cycles of the output signal of a sinusoidally modulated gyroscope to obtain the angular velocity. We propose an electronic circuitry that periodically reverses the demodulator input, allowing for the acquisition of two samples of the gyroscope signal with the same magnitude and opposite polarities. The angular velocity is obtained from the subtraction of these two samples, suppressing the electronic offset. Experiments showed that the proposed method reduces the demodulator offset drift from 4.4 mu V/degrees C to about 14 nV/degrees C, which is equivalent to a reduction, from 0.2 deg/h/degrees C to about 0.0006 deg/h/degrees C in the tested gyroscope. The proposed technique improved the bias stability of the tested gyroscope from 0.0162 to 0.0071 deg/h. (C) 2016 Optical Society of America
机译:提出了一种消除开环干涉式光纤陀螺仪的解调器电路中的偏移漂移的技术。该技术采用了一种解调方案,该方案使用正弦调制陀螺仪的输出信号的负半周期的面积来获得角速度。我们提出了一种电子电路,该电路会定期使解调器输入反向,从而可以获取两个幅度相同且极性相反的陀螺仪信号样本。通过将这两个样本相减获得角速度,从而抑制了电子偏移。实验表明,该方法将解调器失调漂移从4.4μV /°C降低至约14 nV /°C,相当于从0.2 deg / h /°C降低至约0.0006 deg / h /°C。在经过测试的陀螺仪中所提出的技术将被测陀螺仪的偏置稳定性从0.0162提高到0.0071 deg / h。 (C)2016美国眼镜学会

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