Imperfection Parameter Observer and Drift Compensation Controller Design of Hemispherical Resonator Gyros
Jaehwan Pi and Hyochoong Bang
International Journal of Aeronautical and Space Sicences, vol. 14, no. 4, pp.379-386, 2013
Abstract : The hemispherical resonator gyroscope is a type of vibratory gyroscope, which can measure angle or angular rate, based
on its operating mode. This paper deals with the case when the hemispherical resonator gyroscope is operated in angle
measurement mode. In angle measurement mode, the resonator pattern angle precesses, with respect to the external rotation
input, by the principle of the Coriolis effect, so that the external rotation can be estimated, by measuring the amount of
precession angle. However, this pattern angle drifts, due to the manufacturing error of the resonator. Since the drift effect
causes degradation of the angle estimation performance of the resonator, the corresponding drift compensation control should
be performed, to enhance the estimation performance. In this paper, a mathematical model of the hemispherical resonator
gyro is first introduced. By using the mathematical model, a nonlinear observer for imperfection parameter estimation, and
the corresponding compensation controller are designed to operate hemispherical resonator gyros, as angle measurement
sensors.
Keyword : Hemispherical resonator gyro, Nonlinear observer, Feedback linearization |