A micromachined gyroscope in which a high-speed spinning rotor is suspended electrostatically in a vacuum cavity usually functions as a dual-axis angular rate sensor. An inherent coupling error between the two sensing axes exists owing to the angular motion of the spinning rotor being controlled by a torque-rebalance loop. In this paper, a decoupling compensation method is proposed and investigated experimentally based on an electrostatically suspended micromachined gyroscope. In order to eliminate the negative spring effect inherent in the gyroscope dynamics, a stiffness compensation scheme was utilized in design of the decoupled rebalance loop to ensure loop stability and increase suspension stiffness. The experimental results show an ove...
[[abstract]]The current dual-axis vibratory wheel gyroscopes are mostly designed to have merely one ...
AbstractPrecise control of a magnetically suspended double-gimbal control moment gyroscope (MSDGCMG)...
This paper presents the experimental modeling and system identification of a doubly decoupled x-axis...
This paper presents technology for the suppression of the mechanical coupling errors for an improved...
Dual-mass MEMS gyroscope is one of the most popular inertial sensors. In this chapter, the structure...
peer reviewedThis paper describes the state-of-the-art of micromachined gyroscopes based on a spinni...
This paper presents a study on dynamics of a dual-mass MEMS vibratory gyroscope in presence of fabri...
Axisymmetric microelectromechanical (MEM) vibratory rate gyroscopes are designed so the central post...
A novel doubly decoupled bulk micromachined lateral gyroscope, proposed in our former work, can effi...
This paper reports a new symmetric gyroscope structure that allows not only matched resonant frequen...
This thesis presents the quasi-static acceleration compensation methods for a fully decoupled MEMS g...
This paper carries out an experiment study of decoupling performance for a novel lateral axis microm...
The goal of this work is development of fully electrostatically suspended and rebalancing angular ra...
The current paper describes the design and fabrication of a micromachined electrostatically suspende...
This paper presents the experimental modeling and system identification of a doubly decoupled x-axis...
[[abstract]]The current dual-axis vibratory wheel gyroscopes are mostly designed to have merely one ...
AbstractPrecise control of a magnetically suspended double-gimbal control moment gyroscope (MSDGCMG)...
This paper presents the experimental modeling and system identification of a doubly decoupled x-axis...
This paper presents technology for the suppression of the mechanical coupling errors for an improved...
Dual-mass MEMS gyroscope is one of the most popular inertial sensors. In this chapter, the structure...
peer reviewedThis paper describes the state-of-the-art of micromachined gyroscopes based on a spinni...
This paper presents a study on dynamics of a dual-mass MEMS vibratory gyroscope in presence of fabri...
Axisymmetric microelectromechanical (MEM) vibratory rate gyroscopes are designed so the central post...
A novel doubly decoupled bulk micromachined lateral gyroscope, proposed in our former work, can effi...
This paper reports a new symmetric gyroscope structure that allows not only matched resonant frequen...
This thesis presents the quasi-static acceleration compensation methods for a fully decoupled MEMS g...
This paper carries out an experiment study of decoupling performance for a novel lateral axis microm...
The goal of this work is development of fully electrostatically suspended and rebalancing angular ra...
The current paper describes the design and fabrication of a micromachined electrostatically suspende...
This paper presents the experimental modeling and system identification of a doubly decoupled x-axis...
[[abstract]]The current dual-axis vibratory wheel gyroscopes are mostly designed to have merely one ...
AbstractPrecise control of a magnetically suspended double-gimbal control moment gyroscope (MSDGCMG)...
This paper presents the experimental modeling and system identification of a doubly decoupled x-axis...