@inproceedings{079977c2a43549408f5227c19ad8aae5,
title = "Dynamic analysis of vibration isolation system with magnetic suspension on satellites",
abstract = "The vibration isolation platform is widely used to isolate the micro vibration that is harmful to the sensitive payloads on satellites. The traditional passive vibration isolation platform has difficulty in isolating vibration with low frequency and designing the stiffness and damping parameters. In this work, a new kind of vibration isolation platform whose actuators are based on the magnetic suspension techniques is presented. The first step studies the force between two coils with currents and gives a simplified model of the force. The model of a single strut of the vibration isolation platform is described and the control currents are designed. Then the dynamic model of the vibration isolation platform is built. Based on this dynamic model, the electromagnetic coupling among struts is discussed, the stability and the parameters sensitivity of the platform are analyzed. The accuracy and efficiency of this study are validated through numerical simulations of an attitude control loop using the vibration isolation platform.",
keywords = "Magnetic suspension techniques, Vibration isolation",
author = "Yao Zhang and Chao Sheng and Quan Hu and Mou Li and Zixi Guo and Rui Qi",
note = "Publisher Copyright: {\textcopyright} 2018 Univelt Inc. All rights reserved.; AAS/AIAA Astrodynamics Specialist Conference, 2017 ; Conference date: 20-08-2017 Through 24-08-2017",
year = "2018",
language = "English",
isbn = "9780877036456",
series = "Advances in the Astronautical Sciences",
publisher = "Univelt Inc.",
pages = "83--101",
editor = "Seago, {John H.} and Strange, {Nathan J.} and Scheeres, {Daniel J.} and Parker, {Jeffrey S.}",
booktitle = "ASTRODYNAMICS 2017",
address = "United States",
}