Title :
AMB Vibration Control for Structural Resonance of Double-Gimbal Control Moment Gyro With High-Speed Magnetically Suspended Rotor
Author :
Fang, Jiancheng ; Zheng, Shiqiang ; Han, Bangcheng
Author_Institution :
Sch. of Instrum. Sci. & Optoelectron. Eng., Beijing Univ. of Aeronaut. & Astronaut., Beijing, China
Abstract :
This paper explores a robust μ-synthesis control scheme for structural resonance vibration suppression of high-speed rotor systems supported by active magnetic bearings (AMBs) in the magnetically suspended double-gimbal control moment gyro (MSDGCMG). The derivation of a nominal linearized model about an operating point was presented. Sine sweep test was conducted on each component of AMB control system to obtain parameter variations and high-frequency unmodeled dynamics, including the structural resonance modes. A fictitious uncertainty block was introduced to represent the performance requirements for the augmented system. Finally, D-K iteration procedure was employed to solve the robust μ-controller. Rotor run-up experiments on the originally developed MSDGCMG prototype show that the designed μ-controller has a good performance for vibration rejection of structural resonance mode with the excitation of coupling torques. Further investigations indicate that the proposed method can also ensure the robust stability and performance of high-speed rotor system subject to the reaction of a large gyro torque.
Keywords :
aircraft control; attitude control; control system synthesis; gyroscopes; magnetic bearings; robust control; rotors; vibration control; AMB vibration control; D-K iteration procedure; MSDGCMG; active magnetic bearings; coupling torque excitation; fictitious uncertainty block; high-frequency unmodeled dynamics; high-speed magnetically suspended rotor; large gyro torque; magnetically suspended double-gimbal control moment gyro; nominal linearized model; parameter variations; robust μ-synthesis control scheme; robust stability; sine sweep test; structural resonance vibration suppression; Couplings; Magnetic levitation; Resonant frequency; Rotors; Uncertainty; Vibration control; Vibrations; Active magnetic bearing (AMB); double-gimbal control moment gyro; robust control; structural resonance mode; vibration control;
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
DOI :
10.1109/TMECH.2011.2161877