Design and simulation of a new dual-axis control input piezoelectric gyroscope

Cheng-Yang Chang, Tsung-Lin Chen
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引用次数: 1

Abstract

This paper proposed a new design of the dual-axis control input, dual-axis position measurement piezoelectric gyroscope. Using piezoelectric actuation/ sensing to implement this gyroscope can be much more difficult than the conventional gyroscope, which equips only single-axis control input and dual-axis position measurement. This is because multiple mode shapes may exist in the flexure deformation, which complicates the relation between flexure deformation and the proof mass position. This paper solves this multiple-mode-shape problem by designing the location and dimensions of the electrodes such that the piezoelectric force would not excite multiple mode shapes and the voltage output of the sensing electrodes responds only to specific mode shapes. The proposed design achieves a sensitivity of 8 μv/deg/sec for the angular rate sensing and a quadrature error of 0.007%. The low quadrature error could be one of the advantages of sensing the position of the proof mass via sensing the specific deformed shape of the flexure.
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新型双轴控制输入压电陀螺仪的设计与仿真
本文提出了一种新的双轴控制输入、双轴位置测量的压电式陀螺仪设计方案。使用压电驱动/传感来实现这种陀螺仪比传统的陀螺仪要困难得多,传统的陀螺仪只有单轴控制输入和双轴位置测量。这是因为挠曲变形中可能存在多模态振型,这使得挠曲变形与验证质量位置之间的关系变得复杂。本文通过设计电极的位置和尺寸,使压电力不会激发多个模态振型,传感电极的电压输出只响应特定的模态振型,从而解决了多模态振型问题。设计的角速率传感灵敏度为8 μv/deg/sec,正交误差为0.007%。低正交误差可能是通过感知挠曲的特定变形形状来感知验证质量位置的优点之一。
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