缺陷对固波陀螺仪动力学的影响

E. Yilmaz, D. Bindel
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引用次数: 7

摘要

固体波陀螺仪是对称谐振器,通过测量科里奥利力对简并模对的扰动来感知旋转。这些器件的理想动力学是由由旋转引起的扰动耦合的两个相同振子的ODE模型来描述的。在小型化的固体波陀螺仪中,由于制造不完善造成的几何畸变也会干扰动力学,这限制了传感精度。在这项工作中,我们描述了几何缺陷如何影响固波陀螺仪的动力学。我们还使用选择规则来找到关于哪种类型的几何扰动最影响传感器性能的定性信息,并加速计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of imperfections on solid-wave gyroscope dynamics
Solid-wave gyroscopes are symmetric resonators that sense rotation by measuring how Coriolis forces perturb a degenerate mode pair. The idealized dynamics of these devices are described by ODE models of two identical oscillators coupled by a perturbation due to rotation. In miniaturized solid-wave gyroscopes, geometric distortions due to imperfect fabrication also perturb the dynamics, and this limits sensing accuracy. In this work, we describe how geometric imperfections affect the dynamics of solid-wave gyroscopes. We also use selection rules both to find qualitative information about what types of geometry perturbations most affect sensor performance and to accelerate computations.
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