为了提高系统对扰动的抑制能力,设计了一种基于圆条件的反馈控制器

Y. Maeda, M. Iwasaki
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引用次数: 2

摘要

为实现机电系统的快速精确定位,提出了一种新的反馈控制器设计方法。提高干扰抑制性能是FB控制器设计中实现精确性能的一个普遍而重要的指标。然而,由于FB系统的稳定性通常限制了干扰抑制能力,因此很难同时提高干扰抑制能力和稳定性。因此,在本研究中,基于奈奎斯特图上的一个圆条件,设计了一个考虑稳定裕度(即增益和相位裕度)的FB控制器,以期望的稳定裕度实现所需的干扰抑制。数值模拟和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。
A feedback controller design based on circle condition for improvement of disturbance suppression
This paper presents a novel feedback (FB) controller design methodology for the fast and precise positioning of mechatronic systems. Improvement of the disturbance suppression performance is a general and important index in the FB controller design to realize the precision performance. However, since the stability of the FB system generally limits the disturbance suppression capability, improvement of both the disturbance suppression and the stability should be difficult to achieve. In this study, therefore, a FB controller which considers the stability margins (i.e. gain and phase margins) is designed on the basis of a circle condition on the nyquist diagram, to achieve the required disturbance suppression with the desired stability margins. Effectiveness of the proposed approach has been verified by numerical simulations and experiments using a prototype of linear motor-driven table systems.
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