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首页> 外文期刊>International journal of systems science >Synchronisation of uncertain chaotic systems via fuzzy-regulated adaptive optimal control approach
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Synchronisation of uncertain chaotic systems via fuzzy-regulated adaptive optimal control approach

机译:通过模糊调节自适应最优控制方法同步不确定混沌系统

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摘要

This study investigates the adaptive synchronisation of uncertain chaotic systems with unmodelled nonlinearities, dynamic mismatch, parametric perturbations, and external disturbances. A fuzzy-regulated adaptive optimal control (FRAOC) scheme is derived to realise chaotic synchronisation under both structure and parameter uncertainties. In the proposed scheme, the uncertain chaotic dynamics is firstly captured and estimated using a self-organising learning algorithm in an online fuzzy rule database. Based on the complicated and uncertain chaotic information, control strategy is adaptively regulated and configured in the form of weighting matrix for the subsequent optimal controller by the use of fuzzy logic inference. An adaptive optimal controller is then developed, so that its control behaviour and performance are adaptively adjusted for the chaotic synchronisation and compound uncertainty compensation. A supervisory compensator with recursive adaptation law is also designed to attenuate the residual compensation error and guarantee the synchronisation stability. Chaotic synchronisation convergence using the proposed approach can be mathematically ensured and speeded up with satisfactory robustness. Simulation results also demonstrate the effectiveness of the proposed control method in comparison with robust quadratic optimal control based on linear matrix inequality approach.
机译:本研究研究了不确定混沌系统与未掩模非线性,动态失配,参数扰动和外部干扰的自适应同步。推导出模糊调节的自适应最佳控制(FRAOC)方案,以实现结构和参数不确定性下的混沌同步。在所提出的方案中,使用在线模糊规则数据库中的自组织学习算法首先捕获并估计不确定的混沌动态。基于复杂和不确定的混沌信息,通过使用模糊逻辑推断,以对随后的最佳控制器的加权矩阵的形式自适应地调节和配置控制策略。然后开发了一种自适应最佳控制器,以便为混沌同步和复合不确定性补偿自适应地调整其控制行为和性能。具有递归适配法的监控补偿器也旨在衰减残余补偿误差并保证同步稳定性。可以使用所提出的方法进行混沌同步收敛,以满足令人满意的鲁棒性。仿真结果还证明了所提出的控制方法的有效性与基于线性矩阵不等式方法的鲁棒二次最佳控制相比。

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