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Adaptive control design for uncertain polynomial nonlinear systems with parametric uncertainties

机译:参数不确定的不确定多项式非线性系统的自适应控制设计

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In this paper, we will develop an adaptive J∞ control approach for a class of polynomial nonlinear systems with parametric uncertainties. Motivated by the dissipation theory and the vector projection technique, we propose a nonlinear adaptive J ∞ controller and its associated parameter adaptation law. The proposed adaptive control strategy is capable of identifying unknown parameter values quickly and minimizing the effect of estimation error. To further improve adaptive controlled performance, the Lyapunov function will be relaxed from quadratic to higher-order forms and the controller gains are generalized from constant to parameter-dependent. All of the synthesis conditions are formulated in the framework of polynomial/constant linear matrix inequalities and solvable using available software packages. Copyright © 2010 John Wiley & Sons, Ltd.
机译:在本文中,我们将为一类具有参数不确定性的多项式非线性系统开发一种自适应J∞控制方法。基于耗散理论和矢量投影技术,提出了一种非线性自适应J∞控制器及其相关的参数自适应律。所提出的自适应控制策略能够快速识别未知参数值,并使估计误差的影响最小。为了进一步提高自适应控制性能,Lyapunov函数将从二次形式扩展为高阶形式,并且将控制器增益从常数扩展为与参数有关。所有的合成条件都是在多项式/常数线性矩阵不等式的框架内制定的,并且可以使用可用的软件包进行求解。版权所有©2010 John Wiley&Sons,Ltd.

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