谐振器
控制理论(社会学)
陀螺仪
控制器(灌溉)
锁相环
数字信号处理
信号(编程语言)
振动结构陀螺仪
MATLAB语言
速率陀螺仪
角速度
工程类
电子工程
物理
计算机科学
电气工程
操作系统
控制(管理)
程序设计语言
人工智能
航空航天工程
抖动
生物
量子力学
农学
作者
Jungshin Lee,Sung Wook Yun,Jaewook Rhim
出处
期刊:Sensors
[Multidisciplinary Digital Publishing Institute]
日期:2016-04-20
卷期号:16 (4): 555-555
被引量:19
摘要
A Hemispherical Resonator Gyro (HRG) is the Coriolis Vibratory Gyro (CVG) that measures rotation angle or angular velocity using Coriolis force acting the vibrating mass. A HRG can be used as a rate gyro or integrating gyro without structural modification by simply changing the control scheme. In this paper, differential control algorithms are designed for a 2-piece HRG. To design a precision controller, the electromechanical modelling and signal processing must be pre-performed accurately. Therefore, the equations of motion for the HRG resonator with switched harmonic excitations are derived with the Duhamel Integral method. Electromechanical modeling of the resonator, electric module and charge amplifier is performed by considering the mode shape of a thin hemispherical shell. Further, signal processing and control algorithms are designed. The multi-flexing scheme of sensing, driving cycles and x, y-axis switching cycles is appropriate for high precision and low maneuverability systems. The differential control scheme is easily capable of rejecting the common mode errors of x, y-axis signals and changing the rate integrating mode on basis of these studies. In the rate gyro mode the controller is composed of Phase-Locked Loop (PLL), amplitude, quadrature and rate control loop. All controllers are designed on basis of a digital PI controller. The signal processing and control algorithms are verified through Matlab/Simulink simulations. Finally, a FPGA and DSP board with these algorithms is verified through experiments.
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