多输入/多输出对象鲁棒稳定内模控制器的参数化

N. T. Mai, K. Yamada, I. Murakami, Y. Ando, M. Hosoya
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引用次数: 0

摘要

在本文中,我们研究了具有不确定性的多输入/多输出对象的所有鲁棒稳定内模控制器的参数化问题。参数化问题是寻找一个对象的所有稳定控制器的问题。由于这种参数化可以成功地搜索所有合适的稳定控制器,因此它被用作许多控制问题的工具。对于稳定对象,所有稳定控制器的参数化可以用IMC结构表示。只需选择稳定的IMC参数,即可保证IMC结构的闭环稳定性。此外,闭环性能特性与控制器参数直接相关,这使得IMC的在线调谐非常方便。但是,不稳定对象的稳定控制器是否可以用IMC结构来表示,这是一个问题。针对这一问题,Morari和Zafiriou, Chen等人以及Mai等人澄清了任何不稳定植物的稳定控制器都可以通过不稳定植物的所有稳定IMC的参数化来表示IMC结构。然而,对于具有不确定性的对象,它们的IMCs不能保证控制系统的稳定性。在本文中,我们阐明了多输入/多输出对象的所有适当的鲁棒稳定IMC的参数化,使得IMC和内部模型是适当的。
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The parameterization of all robust stabilizing Internal Model Controllers for multiple-input/multiple-output plants
In the present paper, we examine the parameterization of all robust stabilizing Internal Model Controllers (IMCs) for multiple-input/multiple-output plants with uncertainties. The parameterization problem is the problem in which all stabilizing controllers for a plant are sought. Since this parameterization can successfully search for all proper stabilizing controllers, it is used as a tool for many control problems. For stable plants, the parameterization of all stabilizing controllers can be represented by the IMC structure. The IMC structure has advantages such as closed-loop stability is assured simply by choosing a stable IMC parameter. Additionally, closed-loop performance characteristics are related directly to controller parameters, which make online tuning of the IMC very convenient. However, there exists a question whether or not, stabilizing controllers for unstable plants can be represented by the IMC structure. The solution to this problem, Morari and Zafiriou, Chen et al. and Mai et al. clarified that any stabilizing controller for unstable plants can be represented by the IMC structure by the parameterization of all stabilizing IMCs for unstable plants. However, their IMCs cannot guarantee the stability of control system for plants with uncertainties. In this paper, we clarify the parameterization of all proper robust stabilizing IMCs for multiple-input/multiple-output plants such that the IMC and the internal model are proper.
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