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An impulsive multi-delayed feedback control method for stabilizing discrete chaotic systems

机译:稳定离散混沌系统的脉冲多时滞反馈控制方法

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摘要

An impulsive multi-delayed feedback control strategy to control the period-doubling bifurcations and chaos in an n dimensional discrete system is proposed. This is an extension of the previous result in which the control method is applicable to the one-dimensional case. Then the application of the control method in a discrete prey-predator model is studied systematically, including the dynamics analysis on the prey-predator model with no control, the bifurcations analysis on the controlled model, and the bifurcations and chaos control effects illustrations. Simulations show that the period-doubling bifurcations and the resulting chaos can be delayed or eliminated completely. And the periodic orbits embedded in the chaotic attractor can be stabilized. Compared with the existed methods, a milder condition is needed for the realization of the proposed method. The condition may be considered as a generic case and we may state that almost all periodic orbits can be stabilized by the proposed method. Besides, the idea of impulsive control makes the implementation of the proposed control method easy. The impulsive interval is embodied in the analytical expression of the stability condition, hence can be chosen qualitatively according to the real needs, which is an extension of the existed related results. The introduction of multi-delay enlarges the domain of the control parameters and makes the selection of the control parameters have many choices, and hence become flexible.
机译:提出了一种在n维离散系统中控制周期倍增分叉和混沌的脉冲多延迟反馈控制策略。这是对控制方法适用于一维情况的先前结果的扩展。然后系统地研究了控制方法在离散捕食者模型中的应用,包括对没有控制的捕食者模型的动力学分析,对受控模型的分叉分析以及分叉和混沌控制效果图。仿真表明,周期倍增的分支和由此引起的混乱可以被完全延迟或消除。并且可以使嵌入在混沌吸引子中的周期轨道稳定。与现有方法相比,该方法的实现需要较温和的条件。该条件可以认为是一般情况,我们可以指出,所提出的方法可以稳定几乎所有周期轨道。此外,脉冲控制的思想使所提出的控制方法的实施变得容易。脉冲间隔体现在稳定性条件的解析表达式中,因此可以根据实际需要定性地选择,这是对已有结果的扩展。多延迟的引入扩大了控制参数的范围,并使控制参数的选择具有多种选择,从而变得灵活。

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