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Design and Vibration Sensitivity Analysis of a MEMS Tuning Fork Gyroscope with an Anchored Diamond Coupling Mechanism

机译:具有锚固金刚石耦合机制的MEMS音叉陀螺仪的设计和振动敏感性分析

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摘要

In this paper, a new micromachined tuning fork gyroscope (TFG) with an anchored diamond coupling mechanism is proposed while the mode ordering and the vibration sensitivity are also investigated. The sense-mode of the proposed TFG was optimized through use of an anchored diamond coupling spring, which enables the in-phase mode frequency to be 108.3% higher than the anti-phase one. The frequencies of the in- and anti-phase modes in the sense direction are 9799.6 Hz and 4705.3 Hz, respectively. The analytical solutions illustrate that the stiffness difference ratio of the in- and anti-phase modes is inversely proportional to the output induced by the vibration from the sense direction. Additionally, FEM simulations demonstrate that the stiffness difference ratio of the anchored diamond coupling TFG is 16.08 times larger than the direct coupling one while the vibration output is reduced by 94.1%. Consequently, the proposed new anchored diamond coupling TFG can structurally increase the stiffness difference ratio to improve the mode ordering and considerably reduce the vibration sensitivity without sacrificing the scale factor.
机译:本文提出了一种新型的具有锚固式金刚石耦合机构的微机械音叉陀螺仪(TFG),并研究了其模式排序和振动灵敏度。所提出的TFG的感测模式通过使用锚固的金刚石耦合弹簧进行了优化,这使得同相模式的频率比反相的频率高108.3%。感测方向上的同相和反相模式的频率分别为9799.6 Hz和4705.3 Hz。解析解表明,同相和反相模式的刚度差比与感测方向上的振动引起的输出成反比。此外,有限元模拟表明,锚固金刚石联轴器TFG的刚度差比是直接联轴器TFG的16.08倍,而振动输出降低了94.1%。因此,提出的新型锚固式金刚石联轴器TFG可以在结构上增加刚度差比,从而改善模态排序,并在不牺牲比例系数的情况下显着降低振动灵敏度。

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