A Detailed Analysis of the Dynamic Behavior of a MEMS Vibrating Internal Ring Gyroscope

被引:2
作者
Gill, Waqas Amin [1 ]
Howard, Ian [1 ]
Mazhar, Ilyas [1 ]
McKee, Kristoffer [1 ]
机构
[1] Curtin Univ, Dept Mech Engn, Perth, WA 6845, Australia
关键词
MEMS; MEMS gyroscope; vibrating ring gyroscope; dynamics; motion equations; resonance frequency; ring resonator; inertial sensor; DESIGN; WHEEL;
D O I
10.3390/mi15091107
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This paper presents the development of an analytical model of an internal vibrating ring gyroscope in a Microelectromechanical System (MEMS). The internal ring structure consists of eight semicircular beams that are attached to the externally placed anchors. This research work analyzes the vibrating ring gyroscope's in-plane displacement behavior and the resulting elliptical vibrational modes. The elliptical vibrational modes appear as pairs with the same resonance frequency due to the symmetric structure of the design. The analysis commences by conceptualizing the ring as a geometric structure with a circular shape possessing specific dimensions such as thickness, height, and radius. We construct a linear model that characterizes the vibrational dynamics of the internal vibrating ring. The analysis develops a comprehensive mathematical formulation for the radial and tangential displacements in local polar coordinates by considering the inextensional displacement of the ring structure. By utilizing the derived motion equations, we highlight the underlying relationships driving the vibrational characteristics of the MEMS' vibrating ring gyroscope. These dynamic vibrational relationships are essential in enabling the vibrating ring gyroscope's future utilization in accurate navigation and motion sensing technologies.
引用
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页数:19
相关论文
共 38 条
[1]  
Acar C, 2009, MEMS REF SHELF, P3
[2]   Mode-Matching of Wineglass Mode Disk Resonator Gyroscope in (100) Single Crystal Silicon [J].
Ahn, Chae Hyuck ;
Ng, Eldwin J. ;
Hong, Vu A. ;
Yang, Yushi ;
Lee, Brian J. ;
Flader, Ian ;
Kenny, Thomas W. .
JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 2015, 24 (02) :343-350
[3]  
Apostolyuk V, 2006, MEMS/ NEMS: HANDBOOK TECHNIQUES AND APPLICATIONS, VOL 1, DESIGN METHODS, P173, DOI 10.1007/0-387-25786-1_6
[4]  
Ayazi F, 1998, MICRO ELECTRO MECHANICAL SYSTEMS - IEEE ELEVENTH ANNUAL INTERNATIONAL WORKSHOP PROCEEDINGS, P621
[5]  
Ayazi F., 2000, SOL STAT SENS ACT WO
[6]   Design, Fabrication and Experiment of Double U-Beam MEMS Vibration Ring Gyroscope [J].
Cao, Huiliang ;
Liu, Yu ;
Kou, Zhiwei ;
Zhang, Yingjie ;
Shao, Xingling ;
Gao, Jinyang ;
Huang, Kun ;
Shi, Yunbo ;
Tang, Jun ;
Shen, Chong ;
Liu, Jun .
MICROMACHINES, 2019, 10 (03)
[7]   Experimental study of thermoelastic damping in MEMS gyros [J].
Duwel, A ;
Gorman, J ;
Weinstein, M ;
Borenstein, J ;
Ward, P .
SENSORS AND ACTUATORS A-PHYSICAL, 2003, 103 (1-2) :70-75
[8]   Frequency Symmetry Comparison of Cobweb-Like Disk Resonator Gyroscope With Ring-Like Disk Resonator Gyroscope [J].
Fan, Bo ;
Guo, Shuwen ;
Cheng, Mengmeng ;
Yu, Lei ;
Zhou, Ming ;
Hu, Wenyan ;
Zheng, Fen ;
Bu, Feng ;
Xu, Dacheng .
IEEE ELECTRON DEVICE LETTERS, 2019, 40 (09) :1515-1518
[9]   Electrostatic correction of structural imperfections present in a microring gyroscope [J].
Gallacher, BJ ;
Hedley, J ;
Burdess, JS ;
Harris, AJ ;
Rickard, A ;
King, DO .
JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 2005, 14 (02) :221-234
[10]  
Gill Waqas Amin, 2023, Designs, V7, DOI 10.3390/designs7050106