Abstract <p>The eigenvalue problem and mixed boundary value problem for the electroelasticity equations describing oscillations of the cylindrical resonator of a solid state wave gyroscope with piezoelectric transducers are solved numerically. The spectrum of natural frequencies, the energy and dissipative characteristics of the oscillating resonator, the time dependence of the electric potential on the piezoelectric elements, the level of the background alternating voltage on the receiving piezoelements located at an angle of 45° to the piezoelectric elements of the excitation system are determined. The time it takes for a solid state wave gyroscope to reach its operating mode is esimated.</p>

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Simulation of Electromechanical Processes in a Solid State Wave Gyroscope with Piezoelectric Transducers

  • I. L. Bataronov,
  • G. E. Shunin,
  • S. A. Kostryukov,
  • V. V. Peshkov

摘要

Abstract

The eigenvalue problem and mixed boundary value problem for the electroelasticity equations describing oscillations of the cylindrical resonator of a solid state wave gyroscope with piezoelectric transducers are solved numerically. The spectrum of natural frequencies, the energy and dissipative characteristics of the oscillating resonator, the time dependence of the electric potential on the piezoelectric elements, the level of the background alternating voltage on the receiving piezoelements located at an angle of 45° to the piezoelectric elements of the excitation system are determined. The time it takes for a solid state wave gyroscope to reach its operating mode is esimated.