Abstract
To improve stability of magnetically suspended rotor system in magnetically suspended control moment gyroscope (MSCMG) at high gimbal rotation speed, linearization of nonlinear force-current-displacement characteristic and relevant control algorithm of magnetic bearing (MB) are investigated. Operating point variation of MB with gimbal rotation is analyzed, and a novel method of variant operating-point linearization referring to gimbal speed is proposed. Linear parameter varying model of MB is achieved and adaptive control algorithm incorporating gain-scheduled and feedforward corresponding to gimbal speed is designed to compensate displacement stiffness rising due to gimbal running and current asscending, which increases gimbal speed from 6.25 (°)/s to 9.5 (°)/s under condition of stable MB-rotor system according to experimental results. It can be concluded that the proposed method can compensate MB force nonlinearity and improve MB-rotor system stability significantly at high gimbal speed.
| Original language | English |
|---|---|
| Pages (from-to) | 110-115 |
| Number of pages | 6 |
| Journal | Jixie Gongcheng Xuebao/Journal of Mechanical Engineering |
| Volume | 43 |
| Issue number | 6 |
| DOIs | |
| State | Published - Jun 2007 |
Keywords
- Control moment gyroscope
- Gain-scheduled
- Linearization
- Magnetic bearing
- Moving-gimbal effects
- Nonlinearity
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