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INPUT-TO-STATE STABILITY FOR DISCRETE-TIME NONLINEAR SYSTEMS

机译:离散时间非线性系统的输入状态稳定性

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In this paper the input-to-state stability (ISS) property is studied for discrete-time nonlinear systems. We show that many ISS results for continuous-time nonlinear systems in earlier papers (Sontag, 1989; Sontag, 1990; Sontag and Wang, 1996; Jiang et al., 1994; Coron et al., 1995) can be extended to the discrete-time case. More precisely, we provide a Lyapunov-like sufficient condition for ISS, and we show the equivalence between the ISS property and various other properties. Utilizing the notion of ISS, we present a small gain theorem for nonlinear discrete time systems. ISS stabilizability is discussed and connections with the continuous-time case are made. As in the continuous time case, where the notion ISS found wide applications, we expect that this notion will provide a useful tool in areas related to stability for nonlinear discrete time systems as well.
机译:本文研究了离散时间非线性系统的输入状态稳定性(ISS)特性。我们在早期论文(Sontag,1989; Sontag,1990; Sontag and Wang,1996; Jiang et al。,1994; Coron et al。,1995)中显示出许多关于连续时间非线性系统的ISS结果。时间案件。更准确地说,我们为国际空间站提供了一个Lyapunov式的充分条件,并且我们证明了国际空间站特性与其他各种特性之间的等效性。利用国际空间站的概念,我们为非线性离散时间系统提出了一个小增益定理。讨论了国际空间站的稳定性,并建立了与连续时间情况的联系。就像在连续时间情况下,ISS概念得到了广泛的应用一样,我们希望这一概念在非线性离散时间系统的稳定性相关领域也将提供有用的工具。

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