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Loop gain stabilizing with an all-digital automatic-gain-control method for high-precision fiber-optic gyroscope

机译:利用全数字自动增益控制方法稳定高精度光纤陀螺仪的环路增益

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摘要

For a fiber-optic gyroscope (FOG) using electronic dithers to suppress the dead zone, without a fixed loop gain, the deterministic compensation for the dither signals in the control loop of the FOG cannot remain accurate, resulting in the dither residuals in the FOG rotation rate output and the navigation errors in the inertial navigation system. An all-digital automatic-gain-control method for stabilizing the loop gain of the FOG is proposed. By using a perturbation square wave to measure the loop gain of the FOG and adding an automatic gain control loop in the conventional control loop of the FOG, we successfully obtain the actual loop gain and make the loop gain converge to the reference value. The experimental results show that in the case of 20% variation in the loop gain, the dither residuals are successfully eliminated and the standard deviation of the FOG sampling outputs is decreased from 2.00 deg /h to 0.62 deg /h (sampling period 2.5 ms, 10 points smoothing). With this method, the loop gain of the FOG can be stabilized over the operation temperature range and in the long-time application, which provides a solid foundation for the engineering applications of the high-precision FOG. (C) 2016 Optical Society of America
机译:对于使用电子抖动抑制死区而又没有固定环路增益的光纤陀螺仪(FOG),无法保持对FOG控制环路中抖动信号的确定性补偿,从而导致FOG中的抖动残留转速输出和惯性导航系统中的导航误差。提出了一种用于稳定FOG环路增益的全数字自动增益控制方法。通过使用扰动方波来测量FOG的环路增益,并在FOG的常规控制环路中添加自动增益控制环路,我们成功地获得了实际的环路增益并使环路增益收敛到参考值。实验结果表明,在环路增益变化20%的情况下,可以成功消除抖动残留,并且FOG采样输出的标准偏差从2.00 deg / h降低至0.62 deg / h(采样周期2.5 ms, 10分平滑)。通过这种方法,可以在整个工作温度范围内以及长期应用中稳定FOG的环路增益,这为高精度FOG的工程应用奠定了坚实的基础。 (C)2016美国眼镜学会

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