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Mode-independent robust stabilization for uncertain Markovian jump nonlinear systems via fuzzy control

机译:不确定马尔可夫跳跃非线性系统的模无关鲁棒镇定的模糊控制

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This paper is concerned with the robust-stabilization problem of uncertain Markovian jump nonlinear systems (MJNSs) without mode observations via a fuzzy-control approach. The Takagi and Sugeno (T-S) fuzzy model is employed to represent a nonlinear system with norm-bounded parameter uncertainties and Markovian jump parameters. The aim is to design a mode-independent fuzzy controller such that the closed-loop Markovian jump fuzzy system (MJFS) is robustly stochastically stable. Based on a stochastic Lyapunov function, a robust-stabilization condition using a mode-independent fuzzy controller is derived for the uncertain MJFS in terms of linear matrix inequalities (LMIs). A new improved LMI formulation is used to alleviate the interrelation between the stochastic Lyapunov matrix and the system matrices containing controller variables in the derivation process. Finally, a simulation example is presented to illustrate the effectiveness of the proposed design method.
机译:本文研究了不确定的马尔可夫跳跃非线性系统(MJNSs)的鲁棒镇定问题,该系统没有通过模糊控制方法进行模式观测。 Takagi和Sugeno(T-S)模糊模型用于表示具有范数有界参数不确定性和Markovian跳跃参数的非线性系统。目的是设计一种与模式无关的模糊控制器,以使闭环马尔可夫跳跃模糊系统(MJFS)具有鲁棒的随机稳定性。基于随机Lyapunov函数,针对线性矩阵不等式(LMI),针对不确定的MJFS推导了使用与模式无关的模糊控制器的鲁棒稳定条件。一种新的改进的LMI公式用于缓解推导过程中随机Lyapunov矩阵与包含控制器变量的系统矩阵之间的相互关系。最后,给出了一个仿真实例来说明所提出的设计方法的有效性。

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