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Design of multi-degree-of-freedom micromachined vibratory gyroscope with double sense-modes

机译:具有双感应模式的多自由度微机械振动陀螺仪的设计

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This paper presents a novel multi-degree-of-freedom (multi-DOF) micromachined vibratory gyroscope design operated at atmospheric pressure. In this design, the complete 2-DOF vibratory structure is utilized in drive-mode and sense-mode and also, the 2-DOF sense-mode is implemented in both driving frame and proof frame, which form the double 2-DOF sense-modes. The 2-DOF vibratory structure could provide drive-mode and sense-mode with large bandwidth and the double 2-DOF sense-modes could provide high gain of gyroscope system, which improves the inherent robustness and sensitivity simultaneously. The simulation results demonstrate that the summed signal of drive-mode dynamic response is consistent with that of sense-mode and that the gain of proposed multi-DOF micromachined vibratory gyroscope can reach up to -10 dB, increased by above 8 dB compared to the design with single 2-DOF sense-mode. Meanwhile, the 3 dB bandwidth of gyroscope system is larger than 200 Hz.
机译:本文提出了一种在大气压下运行的新型多自由度(multi-DOF)微机械振动陀螺仪设计。在此设计中,完整的2-DOF振动结构用于驱动模式和感测模式,并且2-DOF感测模式在驱动框架和证明框架中均实现,从而形成了双2-DOF感测-模式。 2-DOF振动结构可提供具有大带宽的驱动模式和感测模式,而双2-DOF感测模式可提供陀螺仪系统的高增益,从而同时提高了固有的鲁棒性和灵敏度。仿真结果表明,驱动模式动态响应的求和信号与感测模式的求和信号一致,所提出的多自由度微机械振动陀螺仪的增益可以达到-10 dB,与之相比增加了8 dB以上。单2自由度感应模式进行设计。同时,陀螺仪系统的3 dB带宽大于200 Hz。

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