方形系统的全参数稳定控制器的参数化及混合灵敏度问题

René Galindo-Orozco, Cutberto Daniel Conejo-Rosas
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引用次数: 5

摘要

给出了方形系统全参数稳定控制器参数化的显式公式。考虑了多输入多输出(MIMO)、严格固有、集总和线性时不变(LTI)系统的可稳定和可检测的实现。假设状态维数为偶数,输入维数为状态维数的一半,目标具有强稳定性和可检测性。应用分离原理设计了控制器-观测器反馈结构的动态输出控制。观察者的结果是通过对偶得到的。对于控制器和观测器,提出了传递函数在状态空间实现上的左右互素分解,求解了左右丢芬图方程,控制器和观测器均属于PASC。给出了获得强稳定性的条件,并确定了稳定控制器的自由参数,解决了一个混合灵敏度问题。通过两车系统的仿真算例说明了结果。
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A Parametrization of all one parameter stabilizing controllers and a mixed sensitivity problem, for square systems
Explicit formulas of the Parametrization of All one parameter Stabilizing Controllers (PASC) for square systems, are presented. Multi Input Multi Output (MIMO), strictly proper, lumped and Linear Time Invariant (LTI) systems with stabilizable and detectable realizations are considered. It is assumed that the state dimension is even, the input dimension is half the state dimension, and the plant is strongly stabilizable and detectable. The separation principle is applied to design a dynamic output control in a controller-observer feedback configuration. The results for the observer are gotten by duality. For both controller and observer, right and left coprime factorizations of the transfer function in terms of the state space realization are proposed, right and left Diophantine equations are solved, and the controller and observer belong to the PASC. Conditions to get strong stability are given and the free parameters of the stabilizing controllers are fixed solving a MIxed Sensitivity Problem (MISP). The results are illustrated through a simulation example of a two-cart system.
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