Global modelling and simulation of a Coriolis vibrating micro-gyroscope for quadrature error compensation - Sorbonne Université
Conference Papers Year : 2010

Global modelling and simulation of a Coriolis vibrating micro-gyroscope for quadrature error compensation

Abstract

ONERA has been developing a Coriolis Vibrating Gyroscope (CVG) named VIG (Vibrating Integrated Gyro). The fabrication process generates structural defects which induce asymetries in the tunning fork geometry. It results in undesirable quadrature error which limitates the performance by increasing sensitivity to phase and temperature variation and causing poor bias stability. This paper deals with the global modelling of the VIG to improve its performances by compensating quadrature error. A full model of the micro-gyroscope is presented, covering mechanical and electrical aspects. The analysis of its performances is focused on mechanical coupling and aims at implementing a solution to improve bias stability by 7 times.
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Dates and versions

hal-00700866 , version 1 (24-05-2012)

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Mélanie Descharles, Jean Guérard, Hamid Kokabi. Global modelling and simulation of a Coriolis vibrating micro-gyroscope for quadrature error compensation. 11th International Conference on EuroSimE 2010, Apr 2010, Bordeaux, France. pp.1 - 4, ⟨10.1109/ESIME.2010.5464608⟩. ⟨hal-00700866⟩
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