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Finite-time stability and control of impulsive stochastic delayed systems based on average impulsive interval

机译:基于平均脉冲间隔的脉冲随机时滞系统的有限时间稳定性和控制

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This paper addresses the mean square finite-time stability and stabilization for a class of nonlinear impulsive stochastic systems with time-varying delays. Employing multiple Lyapunov-like function and stochastic analysis techniques, sufficient conditions in forms of linear matrix inequalities for the finite-time stability are established based on the average impulsive interval concept. Furthermore, a feedback controller is designed such that the corresponding closed-loop systems are mean square finite-time stable. Finally, a numerical example is provided to illustrate the effectiveness of the obtained results.
机译:本文研究了一类具有时变时滞的非线性脉冲随机系统的均方有限时间稳定性和镇定性。利用多种类Lyapunov函数和随机分析技术,基于平均脉冲间隔概念,建立了线性矩阵不等式形式的有限时间稳定性的充分条件。此外,设计反馈控制器,使得相应的闭环系统是均方有限时间稳定的。最后,提供了一个数值示例来说明所获得结果的有效性。

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