Mr DAVIN ARIFIN DAVIN.ARIFIN2@NOTTINGHAM.AC.UK
RESEARCH FELLOW
Negating self-induced parametric excitation in capacitive ring-based MEMS Coriolis Vibrating Gyroscopes
Arifin, Davin; McWilliam, Stewart
Authors
Dr STEWART MCWILLIAM STEWART.MCWILLIAM@NOTTINGHAM.AC.UK
ASSOCIATE PROFESSOR
Abstract
Rate sensing performance of ring-based capacitive Coriolis Vibratory Gyroscopes (CVGs) is degraded by the presence of imperfections and self-induced parametric excitation caused by electrostatic nonlinearities as the drive amplitude increases. This paper investigates the feasibility of using electrostatic forces to negate self-induced parametric excitation for a ring based CVG having 8 electrodes uniformly spaced inside and outside the ring. A mathematical model is developed to describe sensor dynamics under operating conditions and negation of self-induced parametric excitation is achieved by including additional parametric pumping voltages that generate electrostatic forces in antiphase with the self-induced parametric excitation. Numerical results are obtained for the rate sensitivity, bias rate and quadrature error of the sense output as the drive amplitude is increased and it is found that negating self-induced parametric excitation can enhance device performance under specific conditions by enabling nonlinear frequency matching. The proposed approach is more effective for larger electrode spans and improves the linearity of the rate sensing performance with drive amplitude. Numerical results are presented which include a comparison with results obtained using the Finite Element method to validate the proposed approach.
Citation
Arifin, D., & McWilliam, S. (2025). Negating self-induced parametric excitation in capacitive ring-based MEMS Coriolis Vibrating Gyroscopes. Journal of Sound and Vibration, Article 119016. https://doi.org/10.1016/j.jsv.2025.119016
Journal Article Type | Article |
---|---|
Acceptance Date | Feb 17, 2025 |
Online Publication Date | Feb 18, 2025 |
Publication Date | Feb 18, 2025 |
Deposit Date | Feb 21, 2025 |
Publicly Available Date | Feb 19, 2026 |
Journal | Journal of Sound and Vibration |
Print ISSN | 0022-460X |
Electronic ISSN | 1095-8568 |
Publisher | Elsevier |
Peer Reviewed | Peer Reviewed |
Article Number | 119016 |
DOI | https://doi.org/10.1016/j.jsv.2025.119016 |
Public URL | https://nottingham-repository.worktribe.com/output/45598697 |
Publisher URL | https://www.sciencedirect.com/science/article/abs/pii/S0022460X25000902 |
Files
This file is under embargo until Feb 19, 2026 due to copyright restrictions.
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