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Composite control of a class of nonlinear singularly perturbed discrete-time systems via D-SDRE

机译:一类非线性奇异摄动离散系统的D-SDRE复合控制

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摘要

In this paper, the regulation problem of a class of nonlinear singularly perturbed discrete-time systems is investigated. Using the theory of singular perturbations and time scales, the nonlinear system is decoupled into reduced-order slow and fast (boundary layer) subsystems. Then, a composite controller consisting of two sub-controllers for the slow and fast subsystems is developed using the discrete-time state-dependent Riccati equation (D-SDRE). It is proved that the equilibrium point of the original closed-loop system with a composite controller is locally asymptotically stable. Moreover, the region of attraction of the closed-loop system is estimated by using linear matrix inequality. One example is given to illustrate the effectiveness of the results obtained.
机译:本文研究了一类非线性奇摄动离散时间系统的调节问题。使用奇异摄动和时标的理论,非线性系统被解耦为降阶的慢速和快速(边界层)子系统。然后,使用离散时间状态相关的Riccati方程(D-SDRE),开发了由用于慢速子系统和快速子系统的两个子控制器组成的复合控制器。证明了带有复合控制器的原始闭环系统的平衡点是局部渐近稳定的。此外,通过使用线性矩阵不等式来估计闭环系统的吸引区域。给出一个例子来说明所获得结果的有效性。

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