一种新型伸缩振动陀螺仪的设计

Gobong Choi, Y. Yong
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引用次数: 1

摘要

本文介绍了一种新型的长度扩展振动陀螺仪,用于检测绕z轴旋转的角速度。所提出的陀螺仪是一种以长度扩展模式为驱动模式,以挠曲模式为传感模式来检测系统旋转产生的科里奥利力的新型陀螺仪。设计了陀螺仪,并利用COMSOL有限元软件对陀螺仪特性进行了仿真。石英和langate晶体用于陀螺仪和比较。利用特征频率分析对各陀螺仪的几何结构进行优化,得到各陀螺仪的驱动频率和传感频率。通过频率响应分析,模拟了陀螺在z轴角速度作用下的陀螺特性。结果表明,长度扩展陀螺仪可以用作陀螺传感器。此外,我们发现语言酸盐晶体比石英晶体更适合用于高精度的压电陀螺传感器。
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Design of a novel length extension vibratory gyroscope
In this paper, we introduce a novel design length extension vibratory gyroscope to detect the angular velocity rotation about z-axis. The proposed gyroscope is a new type of a gyroscope which utilizes a length extension mode as a driving mode and a flexure mode as a sensing mode to detect the Coriolis force generated by the rotation of the system. The gyroscope was designed and gyro-characteristics were simulated using COMSOL, finite element method (FEM) software. Quartz and langatate crystals are used for gyroscopes and compared. The driving frequencies and sensing frequencies of each gyroscope are obtained by optimizing the geometries of the each gyroscope using eigenfrequency analyses. Frequency response analyses were performed to simulate the gyro-characteristics of the gyroscopes which subjected to the angular velocity about z-axis. The results show that the length extension gyroscope can be used as a gyro-sensor. Moreover, we find that langatate crystals are more suitable materials for higher precision piezoelectric gyro-sensors than quartz crystal.
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