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Gain scheduled H-infinity control for nonlinear stochastic systems with mixed uncertainties

机译:具有混合不确定性的非线性随机系统的增益调度H-无穷控制

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This paper studies the problem of robust gain-scheduled H controller design for a class of nonlinear Markov jump systems with mixed uncertainties, one is time-varying transition probabilities, which follows a nonhomogeneous jump process, and the other one is parameter uncertainty. Nonlinearity of such systems is linearized by means of gradient linearization procedure, and stochastic linear models are constructed in the vicinity of selected operating states, the time varying transition probability matrix is described as a polytope set. By Lyapunov function approach, under the designed controller, a sufficient condition is presented to ensure the resulting closed-loop system is stochastically stable and a prescribed H performance index is satisfied. Finally, continuous gain-scheduled approach is employed to design continuous time-varying controller on the entire nonlinear jump system. A simulation example is given to illustrate the effectiveness of developed techniques.
机译:本文研究了一类具有混合不确定性的非线性马尔可夫跳跃系统的鲁棒增益调度H 控制器设计问题,其中一个是时变转移概率,它遵循一个非均匀跳跃过程,并且另一个是参数不确定性。这种系统的非线性通过梯度线性化过程线性化,并且在选定的工作状态附近构造随机线性模型,时变跃迁概率矩阵被描述为多面体集合。利用李雅普诺夫函数法,在所设计的控制器下,给出了充分的条件,以确保所产生的闭环系统是随机稳定的,并满足规定的H 性能指标。最后,采用连续增益调度方法在整个非线性跳跃系统上设计连续时变控制器。给出了一个仿真例子来说明已开发技术的有效性。

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