Simulations and Experiments on the Vibrational Characteristics of Cylindrical Resonators with First Three Harmonic Errors

A cylindrical resonator gyroscope is a kind of Coriolis gyroscope, which measures angular velocity or angle via processing of the standing wave. The symmetry of a cylindrical resonator is destroyed by different degrees of geometric nonuniformity and structural damage in the machining process. The un...

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Published in:Micromachines
Main Authors: Chen Liang, Kaiyong Yang, Yao Pan, Yunfeng Tao, Jingyu Li, Shilong Jin, Hui Luo
Format: Article
Language:English
Published: MDPI AG 2022-10-01
Subjects:
Online Access:https://www.mdpi.com/2072-666X/13/10/1679
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author Chen Liang
Kaiyong Yang
Yao Pan
Yunfeng Tao
Jingyu Li
Shilong Jin
Hui Luo
author_facet Chen Liang
Kaiyong Yang
Yao Pan
Yunfeng Tao
Jingyu Li
Shilong Jin
Hui Luo
author_sort Chen Liang
collection DOAJ
container_title Micromachines
description A cylindrical resonator gyroscope is a kind of Coriolis gyroscope, which measures angular velocity or angle via processing of the standing wave. The symmetry of a cylindrical resonator is destroyed by different degrees of geometric nonuniformity and structural damage in the machining process. The uneven mass distribution caused by the asymmetry of the resonator can be expressed in the form of a Fourier series. The first three harmonics will reduce the anti-interference ability of the resonator to the external vibration, as well as increase the angular random walk and zero-bias drift of the gyroscope. In this paper, the frequency split of different modes caused by the first three harmonic errors and the displacement of the center of the cylindrical resonator bottom plate are obtained by simulation, and the relationship between them is explored. The experimental results on five fused silica cylindrical resonators are consistent with the simulation, confirming the linear relationship between the n = 1 frequency split and second harmonic error. A method for evaluating the first three harmonic errors of fused silica cylindrical resonators is provided.
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spelling doaj-art-e31e4e05acee41569505fb89408bde722025-08-20T00:05:29ZengMDPI AGMicromachines2072-666X2022-10-011310167910.3390/mi13101679Simulations and Experiments on the Vibrational Characteristics of Cylindrical Resonators with First Three Harmonic ErrorsChen Liang0Kaiyong Yang1Yao Pan2Yunfeng Tao3Jingyu Li4Shilong Jin5Hui Luo6College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, ChinaCollege of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, ChinaCollege of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, ChinaCollege of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, ChinaCollege of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, ChinaCollege of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, ChinaCollege of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, ChinaA cylindrical resonator gyroscope is a kind of Coriolis gyroscope, which measures angular velocity or angle via processing of the standing wave. The symmetry of a cylindrical resonator is destroyed by different degrees of geometric nonuniformity and structural damage in the machining process. The uneven mass distribution caused by the asymmetry of the resonator can be expressed in the form of a Fourier series. The first three harmonics will reduce the anti-interference ability of the resonator to the external vibration, as well as increase the angular random walk and zero-bias drift of the gyroscope. In this paper, the frequency split of different modes caused by the first three harmonic errors and the displacement of the center of the cylindrical resonator bottom plate are obtained by simulation, and the relationship between them is explored. The experimental results on five fused silica cylindrical resonators are consistent with the simulation, confirming the linear relationship between the n = 1 frequency split and second harmonic error. A method for evaluating the first three harmonic errors of fused silica cylindrical resonators is provided.https://www.mdpi.com/2072-666X/13/10/1679CRGcylindrical resonatorfirst three harmonicsfrequency split
spellingShingle Chen Liang
Kaiyong Yang
Yao Pan
Yunfeng Tao
Jingyu Li
Shilong Jin
Hui Luo
Simulations and Experiments on the Vibrational Characteristics of Cylindrical Resonators with First Three Harmonic Errors
CRG
cylindrical resonator
first three harmonics
frequency split
title Simulations and Experiments on the Vibrational Characteristics of Cylindrical Resonators with First Three Harmonic Errors
title_full Simulations and Experiments on the Vibrational Characteristics of Cylindrical Resonators with First Three Harmonic Errors
title_fullStr Simulations and Experiments on the Vibrational Characteristics of Cylindrical Resonators with First Three Harmonic Errors
title_full_unstemmed Simulations and Experiments on the Vibrational Characteristics of Cylindrical Resonators with First Three Harmonic Errors
title_short Simulations and Experiments on the Vibrational Characteristics of Cylindrical Resonators with First Three Harmonic Errors
title_sort simulations and experiments on the vibrational characteristics of cylindrical resonators with first three harmonic errors
topic CRG
cylindrical resonator
first three harmonics
frequency split
url https://www.mdpi.com/2072-666X/13/10/1679
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