Micro-Vibration Analysis, Suppression, and Isolation of Spacecraft Flywheel Rotor Systems: A Review

In this paper, the main excitation sources of micro vibration of spacecraft flywheel rotor systems (SFRSs) are briefly described, and then the research progress is systematically reviewed from four perspectives, including modeling methods, suppression means, vibration isolation techniques, and groun...

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Main Authors: Qinkai Han, Shuai Gao, Fulei Chu
Format: Article
Language:English
Published: MDPI AG 2024-03-01
Series:Vibration
Subjects:
Online Access:https://www.mdpi.com/2571-631X/7/1/13
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author Qinkai Han
Shuai Gao
Fulei Chu
author_facet Qinkai Han
Shuai Gao
Fulei Chu
author_sort Qinkai Han
collection DOAJ
description In this paper, the main excitation sources of micro vibration of spacecraft flywheel rotor systems (SFRSs) are briefly described, and then the research progress is systematically reviewed from four perspectives, including modeling methods, suppression means, vibration isolation techniques, and ground simulation tests. Finally, the existing problems of current research and the direction of further research are given to better serve the micro-vibration prediction and sensitivity analysis of existing models, and provide reference points for the micro-vibration suppression and isolation of the next generation of high-precision spacecraft.
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spelling doaj.art-5902a43186d743d68d1f63642eb571052024-03-27T14:07:29ZengMDPI AGVibration2571-631X2024-03-017122926310.3390/vibration7010013Micro-Vibration Analysis, Suppression, and Isolation of Spacecraft Flywheel Rotor Systems: A ReviewQinkai Han0Shuai Gao1Fulei Chu2The State Key Laboratory of Tribology, Department of Mechanical Engineering, Tsinghua University, Beijing 100084, ChinaState Key Laboratory of Mechanical Transmission for Advanced Equipment, College of Mechanical Engineering, Chongqing University, Chongqing 400044, ChinaThe State Key Laboratory of Tribology, Department of Mechanical Engineering, Tsinghua University, Beijing 100084, ChinaIn this paper, the main excitation sources of micro vibration of spacecraft flywheel rotor systems (SFRSs) are briefly described, and then the research progress is systematically reviewed from four perspectives, including modeling methods, suppression means, vibration isolation techniques, and ground simulation tests. Finally, the existing problems of current research and the direction of further research are given to better serve the micro-vibration prediction and sensitivity analysis of existing models, and provide reference points for the micro-vibration suppression and isolation of the next generation of high-precision spacecraft.https://www.mdpi.com/2571-631X/7/1/13spacecraft flywheel rotor systemsmicro-vibration modelingvibration suppressionvibration isolationdynamic tests on the ground
spellingShingle Qinkai Han
Shuai Gao
Fulei Chu
Micro-Vibration Analysis, Suppression, and Isolation of Spacecraft Flywheel Rotor Systems: A Review
Vibration
spacecraft flywheel rotor systems
micro-vibration modeling
vibration suppression
vibration isolation
dynamic tests on the ground
title Micro-Vibration Analysis, Suppression, and Isolation of Spacecraft Flywheel Rotor Systems: A Review
title_full Micro-Vibration Analysis, Suppression, and Isolation of Spacecraft Flywheel Rotor Systems: A Review
title_fullStr Micro-Vibration Analysis, Suppression, and Isolation of Spacecraft Flywheel Rotor Systems: A Review
title_full_unstemmed Micro-Vibration Analysis, Suppression, and Isolation of Spacecraft Flywheel Rotor Systems: A Review
title_short Micro-Vibration Analysis, Suppression, and Isolation of Spacecraft Flywheel Rotor Systems: A Review
title_sort micro vibration analysis suppression and isolation of spacecraft flywheel rotor systems a review
topic spacecraft flywheel rotor systems
micro-vibration modeling
vibration suppression
vibration isolation
dynamic tests on the ground
url https://www.mdpi.com/2571-631X/7/1/13
work_keys_str_mv AT qinkaihan microvibrationanalysissuppressionandisolationofspacecraftflywheelrotorsystemsareview
AT shuaigao microvibrationanalysissuppressionandisolationofspacecraftflywheelrotorsystemsareview
AT fuleichu microvibrationanalysissuppressionandisolationofspacecraftflywheelrotorsystemsareview