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首页> 外文期刊>International Journal of Intelligent Systems and Applications >Controlling and Synchronizing of Fractional-Order Chaotic Systems via Simple and Optimal Fractional-Order Feedback Controller
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Controlling and Synchronizing of Fractional-Order Chaotic Systems via Simple and Optimal Fractional-Order Feedback Controller

机译:通过简单和最优分数阶反馈控制器控制和同步分数阶混沌系统

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In this paper, a simple and optimal form of fractional-order feedback approach assigned for the control and synchronization of a class of fractional-order chaotic systems is proposed. The proposed control law can be viewed as a distributed network of linear regulators wherein each node is modeled by a PI controller with moderate gains. The multiobjective genetic algorithm with chaotic mutation, adopted in this work, can be visualized as a combination of structural and parametric genes of a controller orchestrated in a hierarchical fashion. Then, it is applied to select an optimal knowledge base, which characterizes the developed controller, and satisfies various design specifications. The proposed design and optimization of the developed controller represents a simple powerful approach to provide a reasonable tradeoff between computational overhead, storage space, numerical accuracy and stability criterion in control and synchronization of a class of fractional-order chaotic systems. Simulation results show the satisfactory performance of the proposed approach.
机译:在本文中,提出了一种分配给一类分数阶混沌系统的控制和同步的分数阶反馈方法的简单和最优形式。所提出的控制律可以看作是线性调节器的分布式网络,其中每个节点由具有中等增益的PI控制器建模。这项工作中采用的具有混沌突变的多目标遗传算法,可以可视化为以分层方式编排的控制器的结构和参数基因的组合。然后,将其应用于选择一个最佳知识库,该知识库表征开发的控制器并满足各种设计规范。拟议中的控制器的设计和优化代表了一种简单而有效的方法,可以在一类分数阶混沌系统的控制和同步中在计算开销,存储空间,数值精度和稳定性准则之间提供合理的折衷。仿真结果表明了该方法的令人满意的性能。

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