Title :
Modification of piezoelectric vibratory gyroscope resonator parameters by feedback control
Author :
Loveday, Philip W. ; Rogers, Craig A.
Author_Institution :
Div. of Mater. Sci. & Technol., CSIR, Pretoria, South Africa
Abstract :
A method for analyzing the effect of feedback control on the dynamics of piezoelectric resonators used in vibratory gyroscopes has been developed. This method can be used to determine the feasibility of replacing the traditional mechanical balancing operations, used to adjust the resonant frequency, by displacement feedback and for determining the velocity feedback required to produce a particular bandwidth. Experiments were performed on a cylindrical resonator with discrete piezoelectric actuation and sensing elements to demonstrate the principles. Good agreement between analysis and experiment was obtained, and it was shown that this type of resonator could be balanced by displacement feedback. The analysis method presented also is applicable to micromachined piezoelectric gyroscopes.
Keywords :
crystal resonators; electric sensing devices; feedback; gyroscopes; piezoelectric actuators; piezoelectric transducers; cylindrical resonator; discrete piezoelectric actuation; displacement feedback; feedback control; micromachined piezoelectric gyroscopes; piezoelectric vibratory gyroscope resonator; vibratory gyroscopes; Electrical capacitance tomography; Electrostatic actuators; Feedback control; Force measurement; Frequency; Gyroscopes; Manufacturing; Rotation measurement; Springs; Vibration measurement;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on