Analytical and experimental studies of the azimuthal module of two-component vibrational micromechanical gyroscope were conducted. It is shown that the micromechanical gyroscope is a system with distributed parameters. The frequency analysis is performed using software T-Flex. The influence of mechanical disturbances on the movement of azimuthal module in the form of translational and angular oscillations is shown; the natural frequencies of the azimuth are defined
The study of an astatic compensating gyrocompass, built on the basis of a modulation micromechanical...
In this paper, the mechanical characteristics of a miniature optomechanical accelerometer, similar t...
This dissertation investigates the design of control algorithms and calibration methods forMicroscal...
Analytical and experimental studies of the azimuthal module of two-component vibrational micromechan...
The aim of the research was to determine the effect of temperature on mechanical properties of a mic...
The article presents the results of the analysis of the noise structure of micromechanical transduce...
This paper presents a novel control circuitry design for both vibrating axes (drive and sense) of vi...
© 2020 IEEE. The gyrocompassing method based on the parametric excitation of micromechanical gyro (M...
AbstractThis paper presents a control algorithm for vibrat-ing gyroscopes so that they can directly ...
Transfer function matrices of 3d MEMS sensor of angular motions and spectral density of noises measu...
The silicon micromechanical gyroscope, which will be introduced in this paper, represents a novel ME...
This paper presents a novel design methodology and hardware implementation for the drive-mode contro...
Micro-Electro-Mechanical Systems (MEMS) gyroscopes are inertial sensors for the measurement of angul...
The invention relates to a micromechanical gyroscope comprising a substrate, at least one gyroscopic...
In this paper we summarize principles of operation of micromachined gyroscopes, analyze dynamics of ...
The study of an astatic compensating gyrocompass, built on the basis of a modulation micromechanical...
In this paper, the mechanical characteristics of a miniature optomechanical accelerometer, similar t...
This dissertation investigates the design of control algorithms and calibration methods forMicroscal...
Analytical and experimental studies of the azimuthal module of two-component vibrational micromechan...
The aim of the research was to determine the effect of temperature on mechanical properties of a mic...
The article presents the results of the analysis of the noise structure of micromechanical transduce...
This paper presents a novel control circuitry design for both vibrating axes (drive and sense) of vi...
© 2020 IEEE. The gyrocompassing method based on the parametric excitation of micromechanical gyro (M...
AbstractThis paper presents a control algorithm for vibrat-ing gyroscopes so that they can directly ...
Transfer function matrices of 3d MEMS sensor of angular motions and spectral density of noises measu...
The silicon micromechanical gyroscope, which will be introduced in this paper, represents a novel ME...
This paper presents a novel design methodology and hardware implementation for the drive-mode contro...
Micro-Electro-Mechanical Systems (MEMS) gyroscopes are inertial sensors for the measurement of angul...
The invention relates to a micromechanical gyroscope comprising a substrate, at least one gyroscopic...
In this paper we summarize principles of operation of micromachined gyroscopes, analyze dynamics of ...
The study of an astatic compensating gyrocompass, built on the basis of a modulation micromechanical...
In this paper, the mechanical characteristics of a miniature optomechanical accelerometer, similar t...
This dissertation investigates the design of control algorithms and calibration methods forMicroscal...