Robust control of magnetic bearing with gyroscopic effects using output feedback controller

Yingxin Yan, G. Duan
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引用次数: 5

Abstract

This paper considers the robust control of a four degree of magnetic bearing system. Rotors with gyroscopic effects are being modeled as linear systems with structure uncertainties, while the speed disturbance of the magnetic bearing system can be treated as structure uncertainties. A simple output feedback controller is proposed for minimizing eigenvalue sensitivities based on complete parametric eigenstructure assignments. The basic idea is to minimize the eigenvalue sensitivities using the design freedom provided by eigenstructure assignments. Besides the design parameters, the eigenvalues of closed-loop system are also optimized within desired regions. The optimizing results demonstrate the effects of the approach
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基于输出反馈控制器的陀螺效应磁轴承鲁棒控制
研究了四度磁轴承系统的鲁棒控制问题。具有陀螺效应的转子被建模为具有结构不确定性的线性系统,而磁轴承系统的速度扰动可以被视为结构不确定性。提出了一种基于完全参数特征结构赋值的简单输出反馈控制器,用于最小化特征值灵敏度。其基本思想是利用特征结构赋值所提供的设计自由度来最小化特征值的灵敏度。除设计参数外,还在期望区域内对闭环系统的特征值进行了优化。优化结果验证了该方法的有效性
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