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Stabilization of Semi-Markovian Jump Systems with Uncertain Probability Intensities and Its Extension to Quantized Control

机译:具有不确定概率强度及其扩展对量化控制的半市场跳跃系统稳定

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摘要

This paper concentrates on the issue of stability analysis and control synthesis for semi-Markovian jump systems (S-MJSs) with uncertain probability intensities. Here, to construct a more applicable transition model for S-MJSs, the probability intensities are taken to be uncertain, and this property is totally reflected in the stabilization condition via a relaxation process established on the basis of time-varying transition rates. Moreover, an extension of the proposed approach is made to tackle the quantized control problem of S-MJSs, where the infinitesimal operator of a stochastic Lyapunov function is clearly discussed with consideration of input quantization errors.
机译:本文专注于具有不确定概率强度的半市场跳跃系统(S-MJSS)的稳定性分析和控制合成问题。这里,为了构建一个更适用的S-MJS的转换模型,概率强度是不确定的,并且该特性通过基于时变的转变速率建立的弛豫过程完全反映在稳定条件下。此外,所提出的方法的扩展是为了解决S-MJS的量化控制问题,其中通过考虑输入量化误差清楚地讨论了随机Lyapunov函数的无限型算子。

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