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Robust Finite-Horizon Control for a Class of Stochastic Nonlinear Time-Varying Systems Subject to Sensor and Actuator Saturations

机译:一类受传感器和执行器饱和影响的随机非线性时变系统的鲁棒有限水平控制

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This technical note addresses the robust ${cal H}_{infty}$ finite-horizon output feedback control problem for a class of uncertain discrete stochastic nonlinear time-varying systems with both sensor and actuator saturations. In the system under investigation, all the system parameters are allowed to be time-varying, the parameter uncertainties are assumed to be of the polytopic type, and the stochastic nonlinearities are described by statistical means which can cover several classes of well-studied nonlinearities. The purpose of the problem addressed is to design an output feedback controller, over a given finite-horizon, such that the ${cal H}_{infty}$ disturbance attenuation level is guaranteed for the nonlinear stochastic polytopic system in the presence of saturated sensor and actuator outputs. Sufficient conditions are first established for the robust ${cal H}_{infty}$ performance through intensive stochastic analysis, and then a recursive linear matrix inequality (RLMI) approach is employed to design the desired output feedback controller achieving the prescribed ${cal H}_{infty}$ disturbance rejection level. Simulation results demonstrate the effectiveness of the developed controller design scheme.
机译:本技术说明针对一类具有传感器和执行器饱和的不确定离散随机非线性时变系统,解决了鲁棒的有限水平输出反馈控制问题。在所研究的系统中,所有系统参数均允许随时间变化,参数不确定性假定为多面体类型,并且随机统计非线性通过统计方法描述,可以涵盖几类经过充分研究的非线性。解决该问题的目的是在给定的有限水平上设计输出反馈控制器,从而在存在饱和状态的情况下为非线性随机多主题系统保证$ {cal H} _ {infty} $干扰衰减水平传感器和执行器输出。首先通过深入的随机分析为稳健的$ {cal H} _ {infty} $性能建立充分的条件,然后采用递归线性矩阵不等式(RLMI)方法设计所需的输出反馈控制器,以达到规定的$ {cal H} _ {infty} $干扰抑制水平。仿真结果证明了所开发控制器设计方案的有效性。

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