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Model Development and Adaptive Imbalance Vibration Control of Magnetic Suspended System
作者姓名:Tang  Liang  Chen  Yiqing
作者单位:北京控制工程研究所,北京控制工程研究所
摘    要:对星载磁悬浮单框架控制力矩陀螺,建立其转子的平动与转动的动力学方程。所建模型反映了转子的动、静不平衡特性,以及转子运动与框架、星体运动的耦合关系。模型是主动磁悬浮控制与动框架效应分析的基础。对动、静不平衡量未知的转子,设计了自适应对中控制器。在分散PD、比例交叉反馈控制器与高低通滤波器的基础上,通过动、静不平衡量的辨识与补偿控制,使转子绕其惯量主轴旋转,衰减角动量交换执行机构高速转子因不平衡而对基座产生的干扰力,消除星上主要颤振源,达到降低卫星姿态抖动的目的。

关 键 词:卫星  单框架控制力矩陀螺  不平衡  主动磁轴承  抖动  控制
收稿时间:25 December 2006
修稿时间:2006-12-25

Model Development and Adaptive Imbalance Vibration Control of Magnetic Suspended System
Tang Liang Chen Yiqing.Model Development and Adaptive Imbalance Vibration Control of Magnetic Suspended System[J].Chinese Journal of Aeronautics,2007,20(5):434-442.
Authors:Tang Liang  Chen Yiqing
Institution:National Laboratory of Space Intelligent Control, Beijing Institute of Control Engineering, P.O.Box2729, Beijing 100080, China
Abstract:A system model is developed to describe the translational and rotational motion of an active-magnetic-bearing-suspended rigid rotor in a single-gimbal control moment gyro onboard a rigid satellite. This model strictly reflects the motion characteristics of the rotor by considering the dynamic and static imbalance as well as the coupling between the gimbal's and the rotor's motion on a satellite platform.Adaptive auto-centering control is carefully constructed for the rotor with unknown dynamic and static imbalance. The rotor makes its rotation about the principal axis of inertia through identifying the small rotational angles between the geometric axis and the principal axis as well as the displacements from the geometric center to the mass center so as to tune a stabilizing controller composed of a decentralized PD controller with cross-axis proportional gains and high- and low-pass filters. The main disturbance in the wheel spinning can thereby be completely removed and the vibration acting on the satellite attenuated.
Keywords:satellite  single-gimbal control moment gyro  imbalance  active magnetic bearing  jitter  System  Magnetic  Vibration Control  Adaptive  Development  disturbance  wheel  spinning  vibration  acting  rotation  inertia  small  angles  geometric center  principal  axis  the mass  tune  stabilizing controller
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