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Dynamic Characteristics of Vertically Coupled Structures and the Design of a Decoupled Micro Gyroscope

机译:垂直耦合结构的动力特性及解耦微型陀螺仪的设计

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摘要

In a vertical type, vibratory gyroscope, the coupled motion between reference (driving) and sensing vibrations causes the zero-point output, which is the unwanted sensing vibration without angular velocity. This structural coupling leads to an inherent discrepancy between the natural frequencies of the reference and the sensing oscillations, causing curve veering in frequency loci. The coupled motion deteriorates sensing performance and dynamic stability. In this paper, the dynamic characteristics associated with the coupling phenomenon are theoretically analyzed. The effects of reference frequency and coupling factor on the rotational direction and amplitude of elliptic oscillation are determined. Based on the analytical studies on the coupling effects, we propose and fabricate a vertically decoupled vibratory gyroscope with the frequency matching.
机译:在垂直型振动陀螺仪中,参考(驱动)和感测振动之间的耦合运动会导致零点输出,这是无角速度的不需要的感测振动。这种结构耦合会导致参考固有频率与感测振荡之间固有的差异,从而导致频率轨迹的曲线转向。耦合的运动会降低感测性能和动态稳定性。本文从理论上分析了与耦合现象有关的动力学特性。确定参考频率和耦合因子对椭圆振荡的旋转方向和幅度的影响。基于对耦合效应的分析研究,我们提出并制造了具有频率匹配的垂直解耦振动陀螺仪。

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