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首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >Robust stability analysis and dynamic gain-scheduled controller design for point time-delay systems with parametrical uncertainties
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Robust stability analysis and dynamic gain-scheduled controller design for point time-delay systems with parametrical uncertainties

机译:具有参数不确定性的点时滞系统的鲁棒稳定性分析和动态增益调度控制器设计

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This paper discusses linear fractional representations (LFR) of parameter-dependent nonlinear systems with real-rational nonlinearities and point-delayed dynamics. Sufficient conditions for robust global asymptotic stability independent of the delays and the existence of a robust stabilizing gain-scheduled dynamic controller are investigated via linear matrix inequalities. Such inequalities are obtained from the values of the time-derivatives of appropriate Lyapunov functions at all the vertices of the polytope which contains the parametrized uncertainties. The synthesized stabilizing controller consists of an interpolation being performed with the stabilizing controllers at the set of vertices of a certain polytope where the nonlinear-rational parametrization belongs to. Some extensions are also given concerning robust global asymptotic stability dependent of the delays. Numerical examples corroborate the usefulness of the proposed formalism and its applicability to practical related problems.
机译:本文讨论了具有实数非线性和点延迟动力学的参数相关非线性系统的线性分数表示(LFR)。通过线性矩阵不等式,研究了独立于时滞的鲁棒全局渐近稳定性的充分条件,以及鲁棒稳定的增益调度动态控制器的存在。这种不等式是从包含参数化不确定性的多面体的所有顶点处的适当Lyapunov函数的时间导数的值获得的。合成的稳定控制器包括由稳定控制器在非线性合理参数化所属的某个多面体的顶点集合处执行的插值。还给出了一些有关延迟的鲁棒全局渐近稳定性的扩展。数值示例证实了所提出的形式主义的有用性及其在实际相关问题中的适用性。

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