Conical magnetic bearings with radial and thrust control

A. Mohamed, F. Emad
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引用次数: 57

Abstract

Conical magnetic bearings with radial and thrust (axial) control are discussed. A model of the conical bearing is developed in state-variable form. Air-gap flux, air-gap displacement, and velocity are used as state variables. A control method based on recent developments in control theory, called Q-parameterization theory, is proposed and used to design a stabilizing controller for the system, which without control is unstable. The control parameters are chosen using CONSOLE (a software tandem for interactive optimization-based design), so that all design requirements are satisfied. Digital simulation was used to verify the method. Transient responses, forced response in all three directions (vertical, horizontal, and axial), and the interactions between them are discussed. Stiffness and whirling characteristics are obtained. The results are satisfactory and confirm the validity of the technique. A method is proposed for compensation of imbalance in magnetic bearings.<>
具有径向和推力控制的锥形磁轴承
讨论了径向和推力(轴向)控制的圆锥磁轴承。建立了状态变量形式的圆锥轴承模型。采用气隙通量、气隙位移和速度作为状态变量。基于控制理论的最新发展,提出了一种被称为q参数化理论的控制方法,并用于设计无控制的不稳定系统的稳定控制器。利用CONSOLE(一种基于交互优化设计的串联软件)选择控制参数,以满足所有设计要求。通过数字仿真对该方法进行了验证。讨论了瞬态响应、三个方向(垂直、水平和轴向)的强迫响应以及它们之间的相互作用。得到了刚度和旋转特性。结果令人满意,证实了该技术的有效性。提出了一种补偿磁轴承不平衡的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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