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MIMO design models and internal regulators for cyclicly switchedparameter-adaptive control systems

机译:循环切换参数自适应控制系统的MIMO设计模型和内部调节器

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摘要

In Pait and Morse (1994) the concept of “cyclic switching” was proposed as a means of dealing with the well-known stabilizability problem, which arises in adaptive controller synthesis because of the existence of points in parameter space where the design model upon which certainty equivalence control is based loses stabilizability. While the procedure outlined in the above paper is specific enough to enable one to construct cyclicly switched adaptive controllers for SISO process models, for the MIMO case two key issues are left unresolved. The objective of this paper is to address both of these issues, thereby extending excitation free, identifier-based adaptive control methods to minimum and nonminimum phase MIMO linear systems
机译:在Pait和Morse(1994)中,提出了“循环切换”的概念,作为解决众所周知的稳定性问题的一种方法,该问题在自适应控制器综合中出现,因为参数空间中存在点,在该点上设计模型确定性等价性控制的基础是失去稳定性。尽管上述论文中概述的过程足够具体,足以使人们能够构造用于SISO过程模型的循环切换自适应控制器,但对于MIMO情况,有两个关键问题尚未解决。本文的目的是解决这两个问题,从而将基于无标识符的无激励自适应控制方法扩展到最小和非最小相位MIMO线性系统

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