永磁游标机平滑速度控制的两自由度准pir控制器

Yuefei Zuo, Jingwei Zhu, Xin Yuan, Christopher H. T. Lee
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引用次数: 3

摘要

在直接驱动应用中,由于系统的一些非理想因素而产生的低频转矩波动影响了控制性能。比例-积分-谐振(PIR)控制器通常用于抑制转矩脉动和平滑转速。一般来说,PIR控制器是基于内模原理设计的,由于准PIR控制器对谐振频率的灵敏度较低,通常采用准PIR控制器来代替经典的PIR控制器。然而,准pir控制器的抗干扰能力受到测量噪声的限制。此外,速度基准的快速变化会引起不期望的动力学,并且需要多个谐振控制器来抑制多个转矩谐波。本文介绍了一种新的PIR控制器设计方法,揭示了谐振控制器的本质。采用瞬时速度观测器抑制测量噪声,使准pir控制器具有较好的抗扰能力和较高的增益。为了避免不期望的动力学,提出了采用跟踪微分器作为速度参考预滤波器的二自由度准pir控制器。提出的TDOF准pir控制器可以通过一个谐振控制器抑制多个转矩谐波。实验结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-degree-of-freedom Quasi-PIR Controller for Smooth Speed Control of Permanent Magnet Vernier Machine
In the direct-drive applications, the low-frequency torque ripples produced by some nonideal factors of the system deteriorates the control performance. The proportional-integral-resonant (PIR) controller is generally employed to suppress the torque ripple and smooth the speed. Generally, the PIR controller is designed based on the internal model principle, and quasi-PIR controller is usually employed instead of the classical PIR controller due to its less sensitivity to the resonant frequency. However, the disturbance rejection ability of the quasi-PIR controller is restricted by the measurement noise. Moreover, undesired dynamics will be caused by the rapid change in speed reference and multiple resonant controllers are required for suppressing multiple torque harmonics. In this paper, a new design method of the PIR controller is introduced to show the essence of the resonant controller. Instantaneous speed observer is employed to suppress the measurement noise so that better disturbance rejection ability of quasi-PIR controller can be achieved with higher gain. To avoid the undesired dynamics, two-degree-of-freedom quasi-PIR controller is proposed by employing a tracking differentiator as the prefilter for speed reference. With the proposed TDOF quasi-PIR controller, multiple torque harmonics can be suppressed by only one resonant controller. Experimental results are shown to verify the proposed method.
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