自适应无差拍前馈补偿对植物扰动的鲁棒定位性能

Souichi Toy Ama, Yousuke Okado, Y. Maeda, M. Iwasaki, H. Hirai
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引用次数: 9

摘要

为了实现机电系统的快速精确定位,提出了一种基于无差拍控制框架的自适应前馈补偿技术。由于温度变化或机构和/或执行器老化引起的植物扰动通常会随着响应变化而恶化定位性能。因此,针对扰动的鲁棒控制器设计是工业应用的重要问题之一。在本研究中,采用自适应无差拍FF控制方法来提供对温度变化引起的植物参数扰动的鲁棒性。该方法利用自适应辨识系统在线辨识参数,然后根据辨识出的参数重新设计无差拍FF控制器,使其在不同温度条件下达到标称性能。利用电偶扫描器样机进行了数值模拟,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。
Adaptive deadbeat feedforward compensation for robust positioning performance against plant perturbations
This paper presents an adaptive feedforward (FF) compensation technique on the basis of the deadbeat control framework for the fast and precise positioning of mechatronic systems. Plant perturbations due to temperature variations or aging in mechanisms and/or actuators generally deteriorate the positioning performance with response variations. A robust controller design against the perturbations, therefore, is one of important issues for industrial applications. In this research, an adaptive deadbeat FF control approach is applied to provide the robustness against the plant parameter perturbations due to temperature variations. The proposed approach identifies the parameters in on-line manner using an adaptive identification system, and then, redesigns the deadbeat FF controller according to the identified parameters to achieve the nominal performance under different temperature conditions. Effectiveness of the proposed approach has been verified by numerical simulations using a prototype of galvano scanners.
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