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Adaptive autocentering control for an active magnetic bearing supporting a rotor with unknown mass imbalance

机译:主动磁轴承支撑未知质量不平衡转子的自适应自动对中控制

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This paper presents a new approach, called adaptive autocentering, that compensates for transmitted force due to imbalance in an active magnetic bearing system. Under the proposed control law, a rigid rotor achieves rotation about the mass center and principal axis of inertia. The basic principle of this approach is to perform on-line identification of the physical characteristics of rotor imbalance and to use the identification results to tune a stabilizing controller. This approach differs from the usual strategy of adaptive feedforward compensation, which models the effect of imbalance as an external disturbance or measurement noise, and then cancels this effect by generating a synchronous reference signal. Unlike adaptive feedforward compensation, adaptive autocentering control is frequency independent and works under varying rotor speed. Performance of the control algorithm is demonstrated in simulation examples for the case of rigid rotors with static or dynamic imbalance.
机译:本文提出了一种称为自适应自动对中的新方法,该方法可以补偿由于主动磁轴承系统中的不平衡而引起的传递力。根据建议的控制定律,刚性转子实现绕质心和惯性主轴的旋转。这种方法的基本原理是对转子不平衡的物理特征进行在线识别,并使用识别结果来调整稳定控制器。这种方法不同于通常的自适应前馈补偿策略,后者将不平衡的影响建模为外部干扰或测量噪声,然后通过生成同步参考信号来消除这种影响。与自适应前馈补偿不同,自适应自动对中控制与频率无关,并且在变化的转子速度下工作。在带有静态或动态不平衡刚性转子的仿真示例中,演示了控制算法的性能。

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