Methods to eliminate nonlinearity of electrostatic control sensors of the wave solid-state gyroscope

A. Maslov, D. A. Maslov, I. Merkuryev, V. V. Podalkov
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引用次数: 1

Abstract

The wave solid-state gyroscope with a ring resonator and electrostatic control sensors is considered. We deduce a mathematical model which describes nonlinear oscillations of the resonator when the control voltage is applied to the electrodes. Various schemes and modes of supplying voltage to the gyroscope sensors are studied. It is shown that reference voltage causes cubic nonlinearity, and alternating voltage causes quadratic nonlinearity of control forces in one mode of the supplying voltage. In another mode, apart from the cubic nonlinearity caused by the reference voltage, there are both the constant component and quadratic nonlinearity. To linearize the resonator oscillations, special supplying voltage modes for the control electrodes are presented. The formed control modes compensate for the nonlinear resonator oscillations caused by the electrostatic sensors. The proposed technique can be used to eliminate nonlinear oscillations and to linearize force characteristics of control sensors for wave solid-state gyroscopes with ring resonators.
消除波动型固态陀螺仪静电控制传感器非线性的方法
研究了带环形谐振器和静电控制传感器的波式固态陀螺仪。我们推导出了当控制电压加到电极上时谐振器非线性振荡的数学模型。研究了陀螺仪传感器供电的各种方案和方式。结果表明,在一种电压模式下,参考电压引起三次非线性,交流电压引起二次非线性。在另一种模式下,除了由参考电压引起的三次非线性外,还存在常数分量和二次非线性。为了使谐振腔振荡线性化,提出了控制电极的特殊供电电压模式。所形成的控制模式补偿了静电传感器引起的非线性谐振腔振荡。所提出的技术可用于消除非线性振荡和线性化具有环形谐振器的波动固态陀螺仪控制传感器的力特性。
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