Set Theoretic Adaptor Control Systems

T. Tsao, M. Safonov
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引用次数: 8

Abstract

In this paper, we propose a direct robust adaptive control scheme based on the L2 ellipsoidal bounding set membership concept associated with recent control-oriented identification motivated by progress in H¿ control. The proposed scheme, called Set Theoretic Adaptor Control (STAC), identifies directly the controller parameters that yield desired performance. It eliminates the need for separate identification of plant parameters. Users of STAC Systems can employ weightings to specify closed-loop plant (not the closed-loop model) performance as in the synthesis of H¿ controllers. Provided certain "persistent excitation" conditions are satisfied, STAC systems guarantee robust achievement of such performance within finite time. The robustness properties of STAC systems are at least as good as nonadaptive robust controllers designed to handle the worst possible situation. Furthermore, restrictions on conventional direct adaptive control schemes such as knowledge of sign of high frequency gain or upper bound of relative degree and minimum phase requirement are not needed for STAC systems, the only restriction being that within the apriori known parameter set there exist controllers that produce the specified performance.
集论适配器控制系统
在本文中,我们提出了一种基于L2椭球边界集隶属度概念的直接鲁棒自适应控制方案。所提出的方案,称为集论适配器控制(STAC),直接确定产生期望性能的控制器参数。它消除了单独识别工厂参数的需要。STAC系统的用户可以使用权重来指定闭环装置(不是闭环模型)的性能,就像在H¿控制器的合成中一样。只要满足一定的“持续激励”条件,STAC系统就能保证在有限时间内稳健地实现这种性能。STAC系统的鲁棒性至少与设计用于处理最坏情况的非自适应鲁棒控制器一样好。此外,对传统的直接自适应控制方案的限制,如高频增益符号或相对程度上界和最小相位要求的知识,在STAC系统中不需要,唯一的限制是在先验已知参数集中存在产生指定性能的控制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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