Theory and Mathematical Modeling of Operational Processes of a Single-Gyro Meter of Three Rotation Angles for a Moving Object
https://doi.org/10.17285/0869-7035.2019.27.2.150-161
Abstract
The paper discusses a design solution for a single-gyro meter of three angles of a moving object's rotations. In terms of physics, this solution is based on the forces of rotation and one- and two-component translational motions of a spherical rotor in electrostatic suspension, generated by a gyro torque motor and sensors. Theoretical substantiation, algorithms and results of comparative mathematical modeling are presented. It is shown that one-component oscillations of the rotor in the equator plane provide the azimuth angle error that is three times smaller than that of two-component oscillations.
About the Authors
V. F. ZhuravlevRussian Federation
B. E. Landau
Russian Federation
P. K. Plotnikov
Russian Federation
References
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Review
For citations:
Zhuravlev V.F., Landau B.E., Plotnikov P.K. Theory and Mathematical Modeling of Operational Processes of a Single-Gyro Meter of Three Rotation Angles for a Moving Object. Giroskopiya i Navigatsiya. 2019;27(2):150-161. (In Russ.) https://doi.org/10.17285/0869-7035.2019.27.2.150-161



