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The Synthesis Model of Flat-Electrode Hemispherical Resonator Gyro

机译:扁电极半球谐振陀螺仪的合成模型

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摘要

The Hemispherical Resonator Gyro (HRG) is a solid-state and widely used vibrating gyroscope, especially in the field of deep space exploration. The flat-electrode HRG is a new promising type of gyroscope with simpler structure that is easier to be fabricated. In this paper, to cover the shortage of a classical generalized Coriolis Vibration Gyroscope model whose parameters are hard to obtain, the model of flat-electrode HRG is established by the equivalent mechanical model, the motion equations of unideal hemispherical shell resonator are deduced, and the calculation results of parameters in the equations are verified to be reliable and believable by comparing with finite element simulation and the reported experimental data. In order to more truthfully reveal the input and output characteristics of HRG, the excitation and detection models with assemble errors and parameters are established based on the model of flat-electrode capacitor, and they convert both the input and output forms of the HRG model to voltage changes across the electrodes rather than changes in force and capacitance. An identification method of assemble errors and parameters is proposed to evaluate and improve the HRG manufacturing technology and adjust the performance of HRG. The average gap could be identified with the average capacitance of all excitation and detection capacitors; fitting the approximate static capacitor model could identify the inclination angle and direction angle. With the obtained model, a firm and tight connection between the real HRG system and theoretical model is established, which makes it possible to build a fully functional simulation model to study the control and detection methods of standing wave on hemispherical shell resonator.
机译:半球谐振陀螺仪(HRG)是固态且广泛使用的振动陀螺仪,特别是在深空探测领域。扁平电极HRG是一种具有发展前景的新型陀螺仪,其结构简单,易于制造。为了弥补经典的通用科里奥利振动陀螺仪模型难以获得的参数,通过等效力学模型建立了平电极HRG模型,推导了非理想半球壳谐振器的运动方程,通过与有限元仿真和实验数据对比,验证了方程中参数的计算结果可靠,可信。为了更真实地揭示HRG模型的输入和输出特性,在平面电极电容器模型的基础上建立了具有装配误差和参数的励磁和检测模型,并将HRG模型的输入和输出形式转换为HRG模型。电极两端的电压变化,而不是力和电容的变化。提出了一种装配误差和参数辨识方法,以评估和改进HRG制造技术,并调整HRG的性能。可以用所有激励和检测电容器的平均电容来确定平均间隙。拟合近似静态电容器模型可以识别倾角和方向角。利用所获得的模型,可以建立真实的HRG系统与理论模型之间的牢固紧密的联系,从而有可能建立一个全功能的仿真模型,以研究半球形壳谐振器的驻波控制和检测方法。

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