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首页> 外文期刊>International Journal of Robust and Nonlinear Control >Symbolic models for time-varying time-delay systems via alternating approximate bisimulation
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Symbolic models for time-varying time-delay systems via alternating approximate bisimulation

机译:通过交替近似双仿真的时变时滞系统的符号模型

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摘要

Time-delay systems are an important class of dynamical systems that provide a solid mathematical framework to deal with many application domains of interest. In this paper, we focus on nonlinear control systems with unknown and time-varying delay signals and we propose one approach to the control design of such systems, which is based on the construction of symbolic models. Symbolic models are abstract descriptions of dynamical systems where one symbolic state and one symbolic input correspond to an aggregate of states and an aggregate of inputs. We first introduce the notion of incremental input-delay-to-state stability and provide sufficient conditions to check it in terms of existence of Lyapunov-Krasovskii functionals. We then derive sufficient conditions for the existence of symbolic models that are shown to be alternating approximately bisimilar to the original system. Further results are also derived, which prove the computability of the proposed symbolic models in a finite number of steps. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:延时系统是一类重要的动力学系统,它提供了一个可靠的数学框架来处理许多关注的应用领域。在本文中,我们将重点放在具有未知和时变时滞信号的非线性控制系统上,并基于符号模型的构造,提出了一种控制此类系统的方法。符号模型是动态系统的抽象描述,其中一个符号状态和一个符号输入对应于状态的集合和输入的集合。我们首先介绍增量输入到状态的延迟稳定性的概念,并提供充分的条件根据Lyapunov-Krasovskii功能的存在性对其进行检查。然后,我们为符号模型的存在导出足够的条件,这些符号模型与原始系统近似交替地相似。还得出了进一步的结果,这些结果证明了所提出的符号模型在有限数量的步骤中具有可计算性。版权所有(c)2014 John Wiley&Sons,Ltd.

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