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Fuzzy modeling and control for conical magnetic bearings using linear matrix inequality

机译:Fuzzy modeling and control for conical magnetic bearings using linear matrix inequality

摘要

A general nonlinear model with six degree-of-freedom rotor dynamics and electromagnetic force equations for conical magnetic bearings is developed. For simplicity, a T-S (Takagi Sugeno) fuzzy model for the nonlinear magnetic bearings assumed no rotor eccentricity is first derived, and a fuzzy control design based on the T-S fuzzy model is then proposed for the high speed and high accuracy control of the complex magnetic bearing systems. The suggested fuzzy control design approach for nonlinear magnetic bearings can be cast into a linear matrix inequality (LMI) problem via robust performance analysis, and the LMI problem can be solved efficiently using the convex optimization techniques. Computer simulations are presented for illustrating the performance of the control strategy considering simultaneous rotor rotation tracking and gap deviations regulation.
机译:建立了具有六自由度转子动力学和电磁力方程的圆锥形电磁轴承的通用非线性模型。为简单起见,首先推导了假设不存在转子偏心的非线性磁性轴承的TS(Takagi Sugeno)模糊模型,然后提出了基于TS模糊模型的模糊控制设计,用于复杂磁体的高速和高精度控制。轴承系统。可以通过鲁棒的性能分析将提出的用于非线性电磁轴承的模糊控制设计方法转化为线性矩阵不等式(LMI)问题,并且可以使用凸优化技术有效地解决LMI问题。提出了计算机仿真,以说明考虑同时转子旋转跟踪和间隙偏差调节的控制策略的性能。

著录项

  • 作者

    Huang S.J.; Lin L.C.;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en_US
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