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Multivariable State Feedback Control of a 500 000-r/min Self-Bearing Permanent-Magnet Motor

机译:500 000 r / min自轴承永磁电动机的多变量状态反馈控制

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The use of magnetic bearings in electrical drive systems enables very long lifetimes at highest speeds and the operation in high-purity or vacuum environments. The machine prototype presented in this paper overcomes several limitations of previously presented high-speed magnetically levitated electrical drive systems. The design features linear bearing characteristics, which enables applying linear state feedback control without linearization of bearing actuators. A multivariable rotor position control scheme is proposed and implemented on a signal processor. The implemented Kalman filter and the linear state feedback controller proved to perform well in practice, stabilizing the system over the design speed range of the machine with a single set of controller parameters. Closed-loop system transfer function measurements verify the presented system modeling and controller performance. Measurements of the machine spinning at 500 000 r/min verify the functionality of the overall system. To the authors’ knowledge, this is the highest speed achieved by magnetically levitated electrical drive systems so far.
机译:在电气驱动系统中使用磁性轴承可以在极高的速度下实现非常长的使用寿命,并可以在高纯度或真空环境下运行。本文提出的机器原型克服了先前提出的高速磁悬浮电驱动系统的一些限制。该设计具有线性轴承特性,可在不线性化轴承执行器的情况下应用线性状态反馈控制。提出了多变量转子位置控制方案并在信号处理器上实现。事实证明,已实现的Kalman滤波器和线性状态反馈控制器在实践中表现良好,使用一组控制器参数即可在机器的设计速度范围内稳定系统。闭环系统传递函数测量结果验证了所提出的系统建模和控制器性能。以500 r / min的转速旋转的机器的测量结果验证了整个系统的功能。据作者所知,这是迄今为止磁悬浮电气驱动系统所达到的最高速度。

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