考虑悬架非线性弹性和扭轴非正交性的微机械陀螺仪受迫振荡模式的动力学与漂移研究

M. R. Saypulaev, I. Merkuryev, G. Saypulaev
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引用次数: 0

摘要

本文以弹性悬架中的敏感元件为代表的微机械陀螺仪为研究对象。考虑了陀螺仪在敏感元件强迫振动作用下扭轴的非正交性和悬架的非线性弹性的动力学问题。研究的目的是考虑器件制造工艺的仪器误差,研究陀螺仪的动力学特性。得到了陀螺仪基座角速度(器件作为角速度传感器工作时)和陀螺仪进动角(器件工作在积分模式下)的估算公式。提出了一个考虑仪器制造误差的陀螺仪漂移模型,并给出了由该缺陷引起的陀螺仪漂移的估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study of the Dynamics and Drift of a Micromechanical Gyroscope Taking into Account the Nonlinear Elasticity of the Suspension and Non-orthogonality of the Torsion Axes in the Forced Oscillation Mode
The object of research is a micromechanical gyroscope, represented by a sensitive element in an elastic suspension. The dynamics of a gyroscope taking into account the non-orthogonality of the torsion axes and the nonlinear elasticity of the suspension under forced vibrations of the sensitive element is considered. The aim of the research is to study the dynamics of the gyroscope taking into account the instrumental errors of the device manufacturing technology. Formulas for estimation the angular velocity of the base of the gyroscope (when the device is operating as an angular velocity sensor) and the angle of precession of the gyroscope (when the device is operating in the integrating mode) are obtained. A model of a gyroscope drift is presented, taking into account the instrumental manufacturing error, and an estimate of the gyroscope drift caused by this defect is demonstrated.
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