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A Complete Characterization of Integral Input-to-State Stability and Its Small-Gain Theorem for Stochastic Systems

机译:完全表征积分输入到状态稳定性及其用于随机系统的小增益定理

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For stochastic systems, this article develops a Lyapunov-type characterization of integral input-to-state stability (iISS), which is truly parallel to the deterministic one. In contrast to preceding results, this article allows stochastic noise to be active globally in the state space. Deriving pathwise bounds of stochastic processes is the original key idea and it leads to new techniques to unify Lyapunov-type characterization of iISS with that of input-to-state stability (ISS). The ISS test becomes a special case of the iISS test completely, which forms a stochastic counterpart of the popular iISS/ISS framework for deterministic nonlinear systems analysis and design. The usefulness of the developed iISS/ISS characterizations is substantiated by utilizing them to consolidate stochastic versions of small-gain criteria to establish stability of interconnected systems without restricting noise effects to bounded domains. The framework of integral noise-to-state stability is also made useful by allowing the global stochastic noise.
机译:对于随机系统,本文开发了积分输入到状态稳定性(IISS)的Lyapunov型表征,其真正平行于确定性。与前面的结果相比,本文允许随机噪声在状态空间中全局处于全球。导出随机过程的牵引界是原始的关键思想,它导致新技术统一IISS的Lyapunov型具有输入到状态稳定性(ISS)。 ISS测试成为IISS测试的特殊情况,它形成了众多IISS / ISS框架的随机对应,用于确定性非线性系统分析和设计。通过利用它们来巩固小增益标准的随机版本来确定互联系统的稳定性而不限制噪声效应来证明发达的IISS / ISS表征的有用性。积分噪声到状态稳定性的框架也可以通过允许全局随机噪声来实现。

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