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Robust Static Output Feedback Stabilization of Discrete-Time Nonlinear Uncertain Systems with H{sub}∞ Performance

机译:具有H {Sub}∞性能的自由时间非线性不确定系统的强大静态输出反馈稳定

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A new approach for the design of robust static output feedback controller for a class of discrete-time Lipschitz nonlinear systems with time-varying uncertainties is proposed based on linear matrix inequalities. The controller has also a guaranteed disturbance attenuation level (H{sub}∞ performance). Thanks to the linearity of the proposed LMIs in both the admissible Lipschitz constant of the system and the disturbance attenuation level, they can be simultaneously optimized through convex multiobjective optimization. The optimization over Lipschitz constant adds an extra important and new feature to the controller, robustness against nonlinear uncertainty. The resulting controller is robust against both nonlinear additive uncertainty and time-varying parametric uncertainties. Explicit norm-wise and element-wise bounds on the tolerable nonlinear uncertainty are derived.
机译:基于线性矩阵不等式,提出了一种具有时变不确定性的一类离散时间Lipschitz非线性系统设计的新方法。控制器还具有保证的干扰衰减级别(H {Sub}∞性能)。由于系统和扰动衰减水平的可允许LIPSCHITZ常数所提出的LMIS的线性,可以通过凸多目标优化同时优化它们。 Lipschitz常数优化为控制器增加了一个额外的重要和新功能,对非线性不确定性的鲁棒性。结果控制器对非线性添加剂不确定性和时变的参数不确定度稳健。派生了可容忍的非线性不确定性的显式标准和元素 - WISE界限。

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