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Linearizing Control of a Distributed Actuation Magnetic Bearing for Thin-Walled Rotor Systems

机译:薄壁转子系统的分布式致动磁轴承线性化控制

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摘要

This paper describes an exact linearizing control approach for a distributed actuation magnetic bearing (DAMB) supporting a thin-walled rotor. The radial DAMB design incorporates a circular array of compact electromagnetic actuators with multi-coil winding scheme optimized for supporting thin-walled rotors. A distinguishing feature is that both the x and y components of the radial bearing force are coupled with all four of the supplied coil currents and so a closed form solution for the linearizing equations cannot be obtained. To overcome this issue, a gradient-based root-finding algorithm is proposed to solve the linearizing equations numerically in real-time. The proposed method can be applied with any chosen constraints on current values to achieve low RMS values while avoiding zero-current operating points. The approach is implemented and tested experimentally on a rotor system comprising two radial DAMBs and a uniform cylindrical shell rotor. The results show that the method achieves more accurate reproduction of demanded bearing forces, thereby simplifying the rotor suspension control design and providing improved stability and vibration control performance compared with implementations based on operating point linearization.
机译:本文介绍了支撑薄壁转子的分布式致动磁轴承(DAMB)的精确线性化控制方法。径向损伤设计包括具有用于支撑薄壁转子的多线圈绕组方案的紧凑型电磁致动器圆形阵列。区分特征是径向轴承力的X和Y部件两者都与所提供的线圈电流中的所有四个耦合,因此不能获得用于线性化方程的闭合形式的解决方案。为了克服这个问题,提出了一种基于梯度的根发现算法来实时地以数字方式解决线性化方程。可以在电流值上应用所提出的方法,以实现低RMS值,同时避免零电流操作点。通过实验在包括两个径向损坏和均匀的圆柱形壳体转子的转子系统上实施和测试方法。结果表明,该方法达到了更精确的要求轴承力的再现,从而简化了转子悬架控制设计并提供了基于操作点线性化的实现的实施方式改进的稳定性和振动控制性能。

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