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Parameter identification and adaptive impulsive synchronization of uncertain complex-variable chaotic systems

机译:不确定复变混沌系统的参数辨识与自适应脉冲同步

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Synchronization of nonlinear dynamical systems with complex variables has attracted much more attention in various fields of science and engineering. In this paper, the problem of parameter identification and adaptive impulsive synchronization for a class of chaotic (hyperchaotic) complex nonlinear systems with uncertain parameters is investigated. Based on the theories of adaptive control and impulsive control, a synchronization scheme is designed to make a class of chaotic and hyperchaotic complex systems asymptotically synchronized, and uncertain parameters are identified simultaneously in the process of synchronization. Particularly, the proposed adaptive-impulsive control laws for synchronization are simple and can be readily applied in practical applications. The synchronization of two identical chaotic complex Chen systems and two identical hyperchaotic complex Lü systems are taken as two examples to verify the feasibility and effectiveness of the proposed controllers and identifiers.
机译:具有复杂变量的非线性动力学系统的同步已经在科学和工程的各个领域引起了更多的关注。本文研究了一类参数不确定的混沌(超混沌)复杂非线性系统的参数辨识和自适应脉冲同步问题。基于自适应控制和脉冲控制的理论,设计了一种同步方案,使一类混沌和超混沌复杂系统渐近同步,并在同步过程中同时识别出不确定参数。特别地,所提出的用于同步的自适应-脉冲控制律是简单的,并且可以容易地在实际应用中应用。以两个相同的混沌复数Chen系统和两个相同的超混沌复数Lü系统的同步为例,验证了所提出的控制器和标识符的可行性和有效性。

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