基于位置的pmlsm速度纹波抑制重复控制设计

Mi Tang, A. Formentini, S. Odhano, P. Zanchetta
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引用次数: 1

摘要

在永磁直线同步电机中出现周期性速度误差有两个原因:1)周期性参考信号;2)齿槽力和摩擦力。为了减少这种周期性错误,迭代学习控制或重复控制方法,与更常见的控制动作结合使用,可以非常有效。然而,对于传统的重复控制器,稳定性滤波器、鲁棒滤波器和其他参数的设计可能是一项复杂的任务,并且可能需要在周期性误差频率发生变化时进行调整。现有的解决方案倾向于开发更多针对重复控制器的自适应整定方法,以增强整个控制系统。本文表明,采用重复控制器可以提高传统速度环的性能,而无需使重复控制器的整定复杂化。因此,提出了一种基于位置的重复控制与无差拍电流控制相结合的方法。仿真结果表明,该方法在不调整参数的情况下,可以有效地减小不同频率下的速度脉动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The design of a position-based repetitive control for speed ripple reduction in PMLSMs
Periodic speed errors can occur in permanent magnet linear synchronous machines for two reasons: 1) a periodic reference signal; 2) cogging force and friction. For reducing such periodic errors, iterative learning control or repetitive control approaches, used in conjunction with more common control actions, can be strongly effective. However, the design of the stability filter, robustness filter and other parameters for a traditional repetitive controller can be a complex task and may need to be adjusted when the frequency of such periodic error varies. Existing solutions tend to develop more adaptive tuning methods for repetitive controller to enhance the whole control system. This paper shows that the performance of a traditional speed loop can be enhanced with a repetitive controller without complicating the tuning of the repetitive controller. Consequently, a position-based repetitive control combined with deadbeat current control method is proposed. Simulation results show that the proposed method is effective for reducing speed ripple at difference frequencies without necessarily adjusting its parameters.
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