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Input-to-state stability for discrete-time time-varying systems with applications to robust stabilization of systems in power form

机译:离散时间时变系统的输入状态稳定性,可用于以功率形式稳定系统的应用

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摘要

Input-to-state stability (ISS) of a parameterized family of discrete-time time-varying nonlinear systems is investigated. A converse Lyapunov theorem for such systems is developed. We consider parameterized families of discrete-time systems and concentrate on a semiglobal practical type of stability that naturally arises when an approximate discrete-time model is used to design a controller for a sampled-data system. An application of our main result to time-varying periodic systems is presented, and this is used to solve a robust stabilization problem, namely to design a control law for systems in power form yielding semiglobal practical ISS (SP-ISS).
机译:研究了离散时间时变非线性系统的参数化族的输入状态稳定性(ISS)。针对此类系统的逆李雅普诺夫定理得到发展。我们考虑离散时间系统的参数化族,并专注于使用近似离散时间模型为采样数据系统设计控制器时自然产生的半全局实用类型的稳定性。提出了我们的主要结果在时变周期系统中的应用,并用于解决鲁棒的稳定问题,即设计功率形式的系统的控制律,产生半全局实用ISS(SP-ISS)。

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