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Controller synthesis for Markovian jump systems subject to incomplete knowledge of transition probabilities and actuator saturation

机译:Markovian跳转系统的控制器综合受转换概率不完全知识和执行器饱和度

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This paper is concerned with Markovian jump systems subject to incomplete knowledge of transition probabilities and actuator saturation. The system under consideration is more general, which covers the systems with completely known and completely unknown transition probabilities. By introducing some free-connection weighting matrices to handle the inaccessible elements of transition probabilities, a new criterion is established to guarantee the stochastic stability of the closed-loop system. An optimization problem with LMI constraints is then formulated to determine the largest contractively invariant set in mean square sense. Finally, two numerical examples are provided to illustrate the merits of our method.
机译:本文涉及Markovian跳跃系统,受转换概率和执行器饱和的不完全知识。正在考虑的系统更为一般,涵盖具有完全已知和完全未知的过渡概率的系统。通过引入一些自由连接加权矩阵来处理转换概率的无法访问的元素,建立了一种新的标准,以保证闭环系统的随机稳定性。然后配制LMI约束的优化问题以确定均方均衡中最大的合同不变集。最后,提供了两个数值例子以说明我们方法的优点。

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