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Indirect adaptive control of discrete chaotic systems

机译:离散混沌系统的间接自适应控制

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摘要

In this paper an indirect adaptive control algorithm is proposed to stabilize the fixed points of discrete chaotic systems. It is assumed that the functionality of the chaotic dynamics is known but the system parameters are unknown. This assumption is usually applicable to many chaotic systems, such as the Henon map, logistic and many other nonlinear maps. Using the recursive-least squares technique, the system parameters are identified and based on the feedback linearization method an adaptive controller is designed for stabilizing the fixed points, or unstable periodic orbits of the chaotic maps. The stability of the proposed scheme has been shown and the effectiveness of the control algorithm has been demonstrated through computer simulations.
机译:本文提出了一种间接自适应控制算法来稳定离散混沌系统的不动点。假定混沌动力学的功能是已知的,但是系统参数是未知的。该假设通常适用于许多混沌系统,例如Henon映射,logistic映射和许多其他非线性映射。使用最小二乘递归技术,确定系统参数,并基于反馈线性化方法,设计了一种自适应控制器,用于稳定混沌图的固定点或不稳定的周期性轨道。证明了所提方案的稳定性,并通过计算机仿真证明了控制算法的有效性。

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