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Optimal control of four-scroll chaotic system using modal series method

机译:基于模态级数法的四涡旋混沌系统优化控制

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© 2018 AMSE Press. All Rights Reserved.The present paper studies a chaotic system with one cubic nonlinear term and deals with optimal control of this system. The problem analysis technique of this paper, which is a major issue in oscillators, robotics, lasers, etc., has not been proposed in previous studies. Modal Series technique was used to solve the problem of optimal control with infinite time horizon for chaotic system. Nonlinear boundary value obtained in this technique is converted to a sequence of time invariable linear boundary value using Pontryagin's minimum principle. By resolving this sequence, state trajectory and optimal control law are obtained in the form of series with uniform convergence. Moreover, this technique allows for selection of suitable number of answers to reach an appropriate approximation of the main answer. In addition, the number of series terms is not limited. A reverse algorithm for drawing approximate state trajectory and sub-optimal control law. The results of simulations confirmed efficiency and accuracy of the proposed algorithm.
机译:© 2018 AMSE 出版社。本文研究了一个具有一个三次非线性项的混沌系统,并研究了该系统的最优控制。本文的问题分析技术是振荡器、机器人、激光器等领域的一个主要问题,在以往的研究中尚未提出。采用模态级数技术求解混沌系统无限时间跨度的最优控制问题。使用Pontryagin最小原理将该技术获得的非线性边界值转换为时间不变线性边界值序列。通过对该序列进行求解,以均匀收敛的级数形式得到了状态轨迹和最优控制律。此外,该技术允许选择适当数量的答案以达到主要答案的适当近似值。此外,系列术语的数量不受限制。一种用于绘制近似状态轨迹和次优控制律的反向算法。仿真结果验证了所提算法的效率和准确性。

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