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首页> 外文期刊>International Journal of Rotating Machinery >Sliding Mode Output Feedback Control of a Flexible Rotor Supported by Magnetic Bearings
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Sliding Mode Output Feedback Control of a Flexible Rotor Supported by Magnetic Bearings

机译:电磁轴承支撑的柔性转子的滑模输出反馈控制

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摘要

A new sliding mode feedback algorithm is applied to control the vibration of a flexible rotor supported by magnetic bearings. It is assumed that the number of states is greater than the number of sensors. A mathematical model of the rotor]magnetic bearing system is presented in terms of partial differential equations. These equations are then discretized into a finite number of ordinary differential equations through Galerkin’s method. The sliding mode control law is designed to be robust to rotor unbalance and transient disturbances. A boundary layer is introduced around each sliding hyperplane to eliminate the chattering phenomenon. The results from numerical simulations are presented that not only corroborate the validity of the proposed controller, but also show the effects of various control parameters as a function of the angular speed of the rotor. In addition, results are presented that indicate how the current required by the magnetic bearings is affected by control parameters and the angular speed of the rotor.
机译:一种新的滑模反馈算法被应用于控制由磁性轴承支撑的柔性转子的振动。假设状态的数量大于传感器的数量。根据偏微分方程,提出了转子–电磁轴承系统的数学模型。然后通过Galerkin方法将这些方程离散为有限数量的常微分方程。滑模控制定律被设计为对转子不平衡和瞬态干扰具有鲁棒性。在每个滑动超平面周围引入边界层以消除颤动现象。数值模拟的结果不仅证明了所提出控制器的有效性,而且还显示了各种控制参数随转子角速度变化的影响。此外,还提供了表明电磁轴承所需电流如何受到控制参数和转子角速度影响的结果。

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