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首页> 外文期刊>Journal of vibration and control: JVC >Robust control of an active magnetic bearing system using H and disturbance observer-based control
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Robust control of an active magnetic bearing system using H and disturbance observer-based control

机译:使用H和干扰观测器控制有源磁轴承系统的鲁棒控制

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摘要

Active magnetic bearing systems (AMBs) have many potential industrial applications where extremely fast and accurate operations are required. However, AMBs are often subject to disturbances in the form of synchronous vibrations due to unmodeled dynamics such as the rotor mass-imbalance and centrifugal forces while the rotor is in rotation. Several methods such as variable notch filters, gain scheduling controllers, and linear parameter varying controllers have been proposed recently to reject the disturbances while the system is operating at high rotational speeds. These methods are practical only if the frequencies of these sinusoidal-like disturbances are directly measurable or accurately known in advance. In this paper, a hybrid control scheme comprised of a feedback H controller and an inner-loop disturbance observer-based control is proposed. The effectiveness of this control scheme is verified by simulation and real-time experiments on an AMB system. Both constant and sinusoidal disturbances are taken into consideration while the rotor is stationary as well as while it is rotating at different speeds. The results demonstrate that the proposed hybrid control scheme exhibits significantly improved performance in comparison to single-loop controllers in the presence of unknown but bounded disturbances.
机译:主动磁性轴承系统(AMB)具有许多潜在的工业应用,需要极快和准确的操作。然而,由于在转子旋转的同时,AMB通常由于诸如转子质量不平衡和离心力而导致的同步振动形式的扰动。最近已经提出了几种方法,例如可变陷波滤波器,增益调度控制器和线性参数变化控制器,以拒绝干扰,而系统以高转速运行。只有当这些正弦扰动的频率直接测量或预先准确地知道,这些方法才是实用的。本文提出了一种由反馈H控制器组成的混合控制方案和基于内环扰动观察者的控制。通过对AMB系统的模拟和实时实验验证了该控制方案的有效性。当转子处于静止状态时,考虑恒定和正弦扰动以及其在不同速度旋转的同时。结果表明,与未知但有界紊乱的情况相比,所提出的混合控制方案表现出显着提高的性能。

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