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Impact of gyroscope operation above the critical bifurcation threshold on scale factor and bias instability

机译:高于分叉阈值的陀螺仪操作对比例因子和偏置不稳定性的影响

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This paper investigates the impact of operating a vibratory rate gyro (VRG) at large oscillation amplitude where the VRG's driven axis behaves like a nonlinear oscillator, described by the Duffing equation. Although open-loop resonators operating above a critical amplitude exhibit catastrophic jump instabilities, we demonstrate that through closed-loop operation, the drive axis can be stably operated at an amplitude above this threshold without impacting drive-axis stability or bias instability, resulting in decreased Angle Random Walk (ARW).
机译:本文研究了在大振幅下操作振动速率陀螺仪(VRG)的影响,其中VRG的驱动轴的行为类似于非线性振荡器,由Duffing方程描述。尽管开环谐振器工作在临界振幅以上会表现出灾难性的跳变不稳定性,但我们证明,通过闭环操作,驱动轴可以在高于此阈值的振幅下稳定运行,而不会影响驱动轴稳定性或偏置不稳定性,从而导致降低角度随机游走(ARW)。

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