具有不确定性的水平主动磁轴承系统的确定性建模

A. R. Husain, M. N. Ahmad, A. Yatim
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引用次数: 3

摘要

本文给出了卧式主动磁轴承系统的确定性数学模型的推导。由于陀螺效应和质量不平衡等系统遗传的非线性,系统是开环不稳定和高耦合的。基于转子的运动方程和电磁线圈的动力学方程,导出了系统8输入的动力学模型,并以16 × 16的状态空间形式表示。利用系统参数和状态变量的上界和下界,将模型转化为确定性形式,表明系统的状态矩阵和扰动矩阵中存在不匹配的不确定性。最后得到的系统模型及其数值可用于设计一类用于系统稳定的动态控制器
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of a Horizontal Active Magnetic Bearing System with Uncertainties in Deterministic Form
In this paper the derivation of mathematical model of a horizontal active magnetic bearing (AMB) system in deterministic form is presented. The system is open-loop unstable and highly coupled due to nonlinearities inherited in the system such as gyroscopic effect and mass imbalance. Based on the equation of motions of the rotor and dynamic equation of electromagnetic coils, the dynamic model of the system with eight inputs is derived and represented in state-space format in which the system matrix is 16times16 in size. By using the upper and lower bounds of the parameter and the state variables of the system, the model is transformed into deterministic form where it can be shown that the system contains mismatched uncertainties in the state and disturbance matrices. This final system model with its numerical values can be used for the design of a class of a dynamic controller for system stabilization
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