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LMI optimization approach to robust H-infinity observer design and static output feedback stabilization for discrete-time nonlinear uncertain systems

机译:用于离散时间非线性不确定系统的鲁棒H无限观测器设计和静态输出反馈稳定的LMI优化方法

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摘要

A new approach for the design of robust H-infinity observers for a class of Lipschitz nonlinear systems with time-varying uncertainties is proposed based on linear matrix inequalities (LMIs). The admissible Lipschitz constant of the system and the disturbance attenuation level are maximized simultaneously through convex multiobjective optimization. The resulting H-infinity observer guarantees asymptotic stability of the estimation error dynamics and is robust against nonlinear additive uncertainty and time-varying parametric uncertainties. Explicit norm-wise and element-wise bounds on the tolerable nonlinear uncertainty are derived. Also, a new method for the robust output feedback stabilization with H-infinity performance for a class of uncertain nonlinear systems is proposed. Our solution is based on a noniterative LMI optimization and is less restrictive than the existing solutions. The bounds on the nonlinear uncertainty and multiobjective optimization obtained for the observer are also applicable to the proposed static output feedback stabilizing controller. Copyright (C) 2008 John Wiley & Sons, Ltd.
机译:提出了一种基于线性矩阵不等式(LMI)的具有不确定性的Lipschitz非线性系统鲁棒H-∞观测器设计的新方法。通过凸多目标优化,可以同时使系统允许的Lipschitz常数和干扰衰减水平最大化。生成的H-无限观测器保证了估计误差动态的渐近稳定性,并且对非线性加性不确定性和时变参数不确定性具有鲁棒性。推导了可容忍的非线性不确定性的显式范数界和元素界。同时,针对一类不确定的非线性系统,提出了一种具有H-∞性能的鲁棒输出反馈镇定的新方法。我们的解决方案基于非迭代LMI优化,并且比现有解决方案的限制更少。为观察者获得的非线性不确定性和多目标优化的范围也适用于所提出的静态输出反馈稳定控制器。版权所有(C)2008 John Wiley&Sons,Ltd.

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