Virtual Actuator Design for Uncertain Metzler Systems

D. Krokavec, A. Filasová
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引用次数: 1

Abstract

The paper presents the design conditions adequate in design of virtual actuators and utilizable by nominal static output control structures in fault-tolerant control for strictly Metzler systems. The positive stabilization with H ∞ norm performance is also addressed for virtual actuator design for strictly Metzler systems with interval uncertainty matrix representations of single actuator faults. Taking into account disturbance conditions and changes of values of variables after the virtual actuator activation, the design conditions are outlined in the terms of linear matrix inequalities. The approach provides a way to obtain acceptable dynamics of the closed loop system after virtual actuator activation.
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不确定Metzler系统的虚拟执行器设计
本文给出了虚拟执行器设计的充分条件,以及在严格梅茨勒系统容错控制中标称静态输出控制结构的可用性。对于具有区间不确定性矩阵表示的严格Metzler系统的虚拟执行器设计,研究了具有H∞范数性能的正镇定问题。考虑扰动条件和虚作动器激活后变量值的变化,用线性矩阵不等式来描述设计条件。该方法为获得虚拟作动器激活后闭环系统的可接受动力学特性提供了一种途径。
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