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Adaptive modified function projective synchronization and parameter identification of uncertain hyperchaotic (chaotic) systems with identical or non-identical structures

机译:具有相同或不同结构的不确定超混沌(混沌)系统的自适应修正函数投影同步和参数辨识

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摘要

Modified function projective synchronization (MFPS), which generalizes many kinds of synchronization form, has received great attention recently. Based on the active control method and adaptive control technique, a general formula for designing the controllers is proposed to achieve adaptive MFPS, which corrects several incomplete results that have been reported recently. In addition, this paper derives the sufficient condition for parameter identification, which was not mentioned in much of the relevant literature concerning MFPS. Furthermore, we extend the MFPS scheme to the cases that the drive and response systems come with non-identical structures. The proposed method is both theoretically rigorous and practically feasible, which has the merits that it can not only achieve the full-state MFPS but also identify the fully unknown parameters in the synchronization process. The theoretical results are successfully applied to three typical illustrative cases: the adaptive MFPS of two identical 4-D hyperchaotic systems with unknown parameters in the response system, the adaptive MFPS between a 5-D hyperchaotic system and a 4-D hyperchaotic system with unknown parameters in the drive system and the adaptive MFPS between a 3-D chaotic system and a 4-D hyperchaotic system when the parameters in the drive system and response system are all unknown. For each case the controller functions and parameter update laws are well designed in detail. Moreover, the corresponding numerical simulations are presented, which agree well with the theoretical analysis.
机译:归纳了多种同步形式的改进功能投影同步(MFPS)近来受到了广泛的关注。基于主动控制方法和自适应控制技术,提出了一种用于实现自适应MFPS的控制器设计通用公式,该公式纠正了最近报道的几种不完全结果。另外,本文得出了用于参数识别的充分条件,这在有关MFPS的许多相关文献中都没有提到。此外,我们将MFPS方案扩展到驱动系统和响应系统具有不同结构的情况。所提出的方法在理论上既严格又切实可行,其优点是不仅可以实现全状态MFPS,而且可以在同步过程中识别出完全未知的参数。理论结果已成功应用于三种典型的说明性情况:响应系统中参数相同的两个相同的4-D超混沌系统的自适应MFPS,5-D超混沌系统与未知的4-D超混沌系统之间的自适应MFPS当驱动系统和响应系统中的参数都未知时,驱动系统中的参数以及3-D混沌系统和4-D超混沌系统之间的自适应MFPS。对于每种情况,控制器功能和参数更新定律均经过精心设计。此外,给出了相应的数值模拟,与理论分析相吻合。

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